US11665160B2 - Systems and methods for interaction among terminal devices and servers - Google Patents

Systems and methods for interaction among terminal devices and servers Download PDF

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US11665160B2
US11665160B2 US17/322,214 US202117322214A US11665160B2 US 11665160 B2 US11665160 B2 US 11665160B2 US 202117322214 A US202117322214 A US 202117322214A US 11665160 B2 US11665160 B2 US 11665160B2
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terminal device
status information
information
server
predetermined
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US20210281568A1 (en
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Hua Lu
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Advanced New Technologies Co Ltd
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Advanced New Technologies Co Ltd
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Assigned to ALIBABA GROUP HOLDING LIMITED reassignment ALIBABA GROUP HOLDING LIMITED ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: LU, HUA
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/08Network architectures or network communication protocols for network security for authentication of entities
    • H04L63/0876Network architectures or network communication protocols for network security for authentication of entities based on the identity of the terminal or configuration, e.g. MAC address, hardware or software configuration or device fingerprint
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • H04L67/52Network services specially adapted for the location of the user terminal
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F21/00Security arrangements for protecting computers, components thereof, programs or data against unauthorised activity
    • G06F21/30Authentication, i.e. establishing the identity or authorisation of security principals
    • G06F21/44Program or device authentication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/08Network architectures or network communication protocols for network security for authentication of entities
    • H04L63/0815Network architectures or network communication protocols for network security for authentication of entities providing single-sign-on or federations
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/10Network architectures or network communication protocols for network security for controlling access to devices or network resources
    • H04L63/107Network architectures or network communication protocols for network security for controlling access to devices or network resources wherein the security policies are location-dependent, e.g. entities privileges depend on current location or allowing specific operations only from locally connected terminals

Definitions

  • the present application relates to the field of data communications, and more particularly, to systems and methods for interaction between terminal devices and between a terminal device and a server.
  • a user may visit websites or use applications (e.g., software applications installed on a desktop/laptop computer or on a mobile device) as daily routines.
  • applications e.g., software applications installed on a desktop/laptop computer or on a mobile device
  • the user may log in to the website or application with the account and corresponding password.
  • the user may be authenticated by the website or application, and the user may then access data in accordance with appropriate access levels.
  • the user may wish to login to the website or application on two or more terminal devices with the same account.
  • the user may wish to login to an account from a computer (e.g., desktop or laptop computer) after logging in to the same account on a website or an application on a mobile phone.
  • the user may wish to log in to an account from a mobile phone after logging in to the same account on a computer.
  • One aspect of the present disclosure is directed to a method, implemented by a first terminal device, for providing authentication on a second terminal device.
  • the method may includes receiving, by a processor device of the first terminal device, first location information and receiving, by the processor device, a first predetermined signal.
  • the method may also include transmitting status information and the first location information to a server upon receiving the first predetermined signal to allow the server to compare the first location information with second location information received from the second terminal device and to allow the server to transmit the status information to the second terminal device.
  • the status information may indicate that the first terminal device is authenticated and the first location information indicates a current location of the first terminal device.
  • the method may includes receiving, from a first terminal device, status information and first location information.
  • the status information may indicate that the first terminal device is authenticated and the first location information may indicate a current location of the first terminal device.
  • the method may also include receiving, from a second terminal device, second location information indicating a current location of the second terminal device.
  • the method may further include comparing the first and second location information to determine whether the current locations of the first and second terminal devices are substantially the same. When it is determined that the current locations of the first and second terminal devices are substantially the same, the method may include transmitting the status information to the second terminal device to authenticate the second terminal device.
  • the terminal device may include a transceiver device that transmits or receives information from a server.
  • the transceiver device may also include a processor device.
  • the processor device may receive first location information and may receive a first predetermined signal.
  • the processor device may also control the transceiver to transmit status information and the first location information to the server upon receiving the first predetermined signal to allow the server to compare the first location information with second location information received from a second terminal device and to allow the server to transmit the status information to the second terminal device.
  • the status information may indicate that the first terminal device is authenticated and the first location information may indicate a current location of the first terminal device.
  • the server may include a transceiver device that transmits or receives information from first and second terminal devices.
  • the server may also include a processor device.
  • the processor device may receive, from a first terminal device, status information and first location information.
  • the status information may indicate that the first terminal device is authenticated and the first location information may indicate a current location of the first terminal device.
  • the processor device may also receive, from a second terminal device, second location information indicating a current location of the second terminal device.
  • the processor device may further compare the first and second location information to determine whether the current locations of the first and second terminal devices are substantially the same. When it is determined that the current locations of the first and second terminal devices are substantially the same, the processor device may control the transceiver to transmit the status information to the second terminal device to authenticate the second terminal device.
  • FIG. 1 is a schematic flow diagram of an exemplary terminal device interaction method, according to an embodiment of the present application
  • FIG. 2 is a flow diagram of an exemplary terminal device interaction method, according to an embodiment of the present application.
  • FIG. 3 is a flow diagram of another exemplary terminal device interaction method, according to an embodiment of the present application.
  • FIG. 4 is a functional block diagram of an exemplary terminal device interaction system, according to an embodiment of the present application.
  • FIG. 5 is a flow diagram of an exemplary terminal device interaction method, according to an embodiment of the present application.
  • FIG. 6 is a flow diagram of another exemplary terminal device interaction method, according to an embodiment of the present application.
  • FIG. 7 is a functional block diagram of an exemplary terminal device, according to an embodiment of the present application.
  • FIG. 8 is a flow diagram of an exemplary terminal device interaction method, according to an embodiment of the present application.
  • FIG. 9 is a flow diagram of an exemplary terminal device interaction method, according to an embodiment of the present application.
  • FIG. 10 is a functional block diagram of an exemplary terminal device, according to an embodiment of the present application.
  • FIG. 11 is a flow diagram of an exemplary terminal device interaction method, according to an embodiment of the present application.
  • FIG. 12 is a flow diagram of an exemplary terminal device interaction method, according to an embodiment of the present application.
  • FIG. 13 is a functional block diagram of an exemplary server, according to an embodiment of the present application.
  • FIG. 1 shows a flow diagram of an exemplary method 1 for a terminal device interaction method provided by an embodiment of the application.
  • Method 1 may comprise a series of steps. Some steps may be optional.
  • a first terminal device may receive status information indicating that the first terminal device is authenticated.
  • the first terminal device may include smart phones, smart bracelets, smart watches, smart glasses, tablet computers, laptops, or desktop computers.
  • the first terminal device may also include other smart devices capable of running software.
  • the first terminal device when visiting websites, or running software or applications, can be authenticated based on account and password information. After authentication, a server may transmit the status information indicating that the first terminal device is authenticated to the first terminal device.
  • the status information may be used for indicating the status that the first terminal device is authenticated.
  • the status information may comprise a character string formed in accordance with a predetermined rule.
  • the status information may also comprise account and/or password information.
  • the status information can be a session identifier, e.g., Session ID, established between the server and the first terminal device.
  • the first terminal device may receive a first predetermined signal.
  • the first terminal device may then transmit first predetermined information, the status information, and/or first location information indicating a current location of the first terminal device to a server.
  • a second terminal device may receive a second predetermined signal, and may transmit second predetermined information with second location information indicating a current location of the second terminal device to the server.
  • the first predetermined signal may include a character string arranged in accordance with a predetermined rule.
  • the first predetermined signal may include a voltage input received by a predetermined port of the first terminal device.
  • first predetermined signal there may be many ways of inputting the first predetermined signal to the first terminal device. For example: inputting the first predetermined signal to the first terminal device through a keyboard; inputting the first predetermined signal to the first terminal device through a virtual key of a touch screen; detecting whether a direction of motion of the first terminal device suddenly changes through an arrangement of a motion detection device, such as inputting the first predetermined signal to the first terminal device if a user shakes the first terminal device.
  • the first terminal device when the first terminal device receives the input first predetermined signal, which may indicate a situation in which the first terminal device's authentication is potentially to be synchronized to another terminal device, the first terminal device may transmit the first predetermined information to the server, so that the status of the first terminal device (e.g., being authenticated) may be synchronized to another terminal device through the server.
  • the first terminal device may transmit the first predetermined information to the server, so that the status of the first terminal device (e.g., being authenticated) may be synchronized to another terminal device through the server.
  • the first location information may indicate the current location of the first terminal device.
  • the first location information can be generated by satellite positioning.
  • the first terminal device may be provided with a Global Positioning System (GPS) module.
  • GPS Global Positioning System
  • the first location information can also be generated by base station positioning.
  • the first terminal device may be provided with a Global System for Mobile Communication (GSM) chip or a Code Division Multiple Access (CDMA) chip, etc.
  • the first location information can also be generated by network IP positioning.
  • the status information and the first location information may be used as part of the content of the first predetermined information.
  • the status information may be separated from the first location information by a separator.
  • one of the status information and the first location information may be used as part of the content of the first predetermined information.
  • the other may be used as an attachment to the first predetermined information.
  • a predetermined character string may be used as the content of the first predetermined information. Both the status information and the first location information may be used as attachment to the first predetermined information.
  • the second terminal device may include smart phones, smart bracelets, smart watches, smart glasses, tablet computers, laptops or desktop computers.
  • the second terminal device may also be other smart devices capable of running software.
  • the second predetermined signal may include a character string arranged in accordance with a predetermined rule.
  • the second predetermined signal may also include a voltage input received by a predetermined port of the second terminal device.
  • inputting the second predetermined signal to the second terminal device There may be many ways of inputting the second predetermined signal to the second terminal device. For example: inputting the second predetermined signal to the second terminal device through a keyboard; inputting the second predetermined signal to the second terminal device through a virtual key of a touch screen; detecting whether a direction of motion of the second terminal device suddenly changes through an arrangement of a motion detection device, such as inputting the second predetermined signal to the second terminal device if a user shakes the second terminal device.
  • receiving the input second predetermined signal by the second terminal device may indicate that the status information of another authenticated terminal device needs to be obtained by the second terminal device so that authentication of the second terminal device can be completed according to the status information.
  • the second location information may indicate the current location of the second terminal device.
  • the second location information can be generated by satellite positioning.
  • the second terminal device may be provided with a GPS module.
  • the second location information can also be generated by base station positioning.
  • the second terminal device may be provided with a GSM chip or CDMA chip, etc.
  • the second location information can also be generated by network IP positioning.
  • the second location information may be used as part of the second predetermined information content.
  • a predetermined character string may be used as the second predetermined information content, and the second location information may be used as an attachment to the second predetermined information.
  • the server may determine whether the first location information and the second location information indicate substantially the same location. If it is determined that the first location information and the second location information indicate substantially the same location, the server may transmit the status information received from the first terminal device to the second terminal device.
  • the server may compare the locations indicated by the first and second location information.
  • the server may communicate with a plurality of terminal devices, all of which can transmit location information to the server, but do not necessarily have to synchronize login status information to the same account. Therefore, the server may determine whether the terminal devices are at the same location based on the received location information.
  • the server may confirm that the first and second terminal devices are co-located and both transmit the predetermined information, indicating that the status information of the first terminal device is to be transmitted to the second terminal device for authenticating the second terminal device. The server may then transmit the status information received from the first terminal device to the second terminal device.
  • the second terminal device may receive the status information from the server.
  • the second terminal device may then be authenticated using the received status information.
  • the status information may include the Session ID assigned by the server to the first terminal device.
  • the Session ID may be added to all subsequent communications with the server after the second terminal device receives the Session ID.
  • the first terminal device, the second terminal device, and the server may be in the same session.
  • the status information may include account and/or password information, so the second terminal device can further access data corresponding to the access level of the account.
  • a corresponding relationship may exist between the Session ID and the account, and the second terminal device may also access data corresponding to the access level of the account based on the Session ID.
  • a first terminal device may be authenticated first.
  • the first terminal device and a second terminal device to be authenticated may transmit predetermined information to a server.
  • the server may then transmit status information of the authenticated terminal device to the second terminal device to be authenticated.
  • Authentication of the second terminal device may be completed according to the status information. This method may avoid re-entering the account and password and improve convenience to the user.
  • the first terminal device may comprise a motion detection device for generating a first predetermined signal when the direction of motion of the first terminal device suddenly changes.
  • the second terminal device may comprise a keyboard for generating a second predetermined signal when a predetermined key of the keyboard is pressed.
  • the first and second predetermined signals may be generated at substantially the same time when, for example, a user uses the first terminal device to press or click the predetermined key of the second terminal device.
  • the predetermined key of the keyboard of the second terminal device When the predetermined key of the keyboard of the second terminal device is pressed by the first terminal device, the direction of motion of the first terminal device may suddenly change during the pressing process, and the motion detection device can generate the first predetermined signal based on the change in the direction of motion. Therefore, the operation of inputting the first predetermined signal to the first terminal device can be achieved.
  • the predetermined key of the second terminal device when the predetermined key of the second terminal device is pressed by the first terminal device, the predetermined key may generate the second predetermined signal, e.g., the operation of inputting the second predetermined signal to the second terminal device can be achieved.
  • FIG. 2 shows an exemplary method of authenticating a terminal device, which may comprise the following steps:
  • Step S 15 The server may compare the first and second location information to determine whether they indicate substantially the same location. When the first location information and the second location information indicate substantially the same location, the server may generate an identification code which can uniquely identify the second terminal device and to indicate the identity of the terminal device, and transmit the identification code to the second terminal device.
  • the server may communicate with a plurality of second terminal devices, the plurality of second terminal devices and the first terminal device may be co-located in the same of substantially the same location, and the user may wish to authenticate one of the plurality of second terminal devices by transmitting the status information of the first terminal device to that second terminal device.
  • the second terminal devices may all transmit the predetermined information to the server. So the server may need to distinguish at which second terminal device in particular the user wishes to obtain the status information.
  • the server may assign an identification code to each of the plurality of second terminal device, so that the second terminal devices can be distinguished by the identification codes.
  • the identification codes can be generated by the server according to a predetermined algorithm.
  • the predetermined algorithm can include a random function, a hash algorithm, etc.
  • Step S 17 The second terminal device may display the identification code.
  • the second terminal device may display the identification code, so that the user can select, confirm, and/or designate the second terminal device to obtain the status information according to the identification code displayed by the second terminal device.
  • the identification code corresponding to each of the plurality of second terminal devices can be displayed.
  • Step S 19 When receiving the selected identification code, the first terminal device and/or the second terminal device may transmit the selected identification code to the server.
  • the user can enter the corresponding identification code of the second terminal device that needs to obtain the status information to the first terminal device, so that the first terminal device can feed the identification code back to the server and the sever can identify the second terminal device that needs to receive the status information.
  • the user can also enter the corresponding identification code of the second terminal device that needs to obtain the status information to the second terminal device, and the second terminal device transmits the identification code to the server, so that the server can identify the second terminal device that needs to receive the status information.
  • the user can also enter the corresponding identification code of the second terminal device that needs to obtain the status information to both the first and second terminal devices, and the first and second terminal devices each feed the identification code back to the server.
  • the first terminal device or the second terminal device may transmit the identification code to the server for further processing.
  • Step S 21 after receiving the identification code, the server may transmit the status information to the second terminal device identified by the identification code.
  • the server after receiving the identification code transmitted by the first terminal device, the server can identify the second terminal device that needs to receive the status information based on the identification code, and transmit the status information to the second terminal device.
  • FIG. 3 shows another exemplary terminal device interaction method, which may also comprise the following steps.
  • Step S 23 the server may transmit the identification code to the first terminal device.
  • the server may transmit the identification code to the first terminal device after generating the identification code.
  • Step S 25 the first terminal device may display the identification code.
  • the first terminal device may display the identification code, so that the user can distinguish among different second terminal devices according to the identification codes displayed on the first terminal device.
  • the first terminal device can display an identification code list, and each second terminal device may display the corresponding identification code, so the user can see the identification code displayed on a certain second terminal device, and correspondingly look up the same identification code from the list displayed by the first terminal device.
  • Step S 27 when a click event occurs to select an identification code displayed by the first terminal device, the first terminal device may transmit the identification code to the server.
  • the user can identify the second terminal device that needs to obtain the status information by clicking on the corresponding identification code displayed by the first terminal device to select that second terminal device.
  • the first terminal device can monitor whether a click event occurs to the displayed identification code.
  • the first terminal device may be provided with a touch screen, and the user can click on a position on the touch screen corresponding to the identification code, or click on the identification code using a mouse device.
  • FIG. 4 shows an exemplary implementation of a terminal device interaction system 100 , which may comprise a first terminal device 110 , a second terminal device 120 and a server 130 .
  • the first terminal device 110 may comprise a first status information receiving module 11 and a first transceiver module 13 .
  • a module may be implemented by a processor device of a terminal device or a server.
  • the processor device may execute software instructions stored on a memory device to perform the functions prescribed by the module.
  • the first terminal device may include smart phones, smart bracelets, smart watches, smart glasses, tablet computers, laptops, or desktop computers.
  • the first terminal device may also include other smart devices capable of running software.
  • the first status information receiving module 11 may be used for receiving status information indicating that the first terminal device is authenticated.
  • the first terminal device 110 when visiting websites, or running software or applications, the first terminal device 110 can be authenticated based on account and password information. After authentication, the server may transmit the status information indicating that the first terminal device 110 is authenticated to the first terminal device 110 , and the first status information receiving module 11 may be used for receiving the status information.
  • the status information may be used for indicating that the first terminal device 110 is authenticated.
  • the status information may comprise a character string formed in accordance with a predetermined rule.
  • the status information may also comprise account and/or password information.
  • the status information may be a session identifier, e.g., Session ID, established between the server and the first terminal device 110 .
  • the first transceiver module 13 may receive a first predetermined signal, and may be used for transmitting first predetermined information with the status information and first location information indicating a current location to the server 130 .
  • the first predetermined signal may include a character string arranged in accordance with a predetermined rule.
  • the first predetermined signal may include a voltage input received by a predetermined port of the first terminal device 110 .
  • first predetermined signal there may be many ways of inputting the first predetermined signal to the first transceiver module 13 . For example: inputting the first predetermined signal through a keyboard; inputting the first predetermined signal through a virtual key of a touch screen; detecting whether a direction of motion of the first terminal device 110 suddenly changes through an arrangement of a motion detection device, such as inputting the first predetermined signal when a user shakes the first terminal device 110 .
  • the first transceiver module 13 may transmit the first predetermined information to the server 130 , so that the status information of the first terminal device 110 may be synchronized to another terminal device (e.g., second terminal device 120 ) through the server 130 .
  • the first location information may indicate the current location of the first terminal device 110 .
  • the first location information can be generated by satellite positioning.
  • the first terminal device 110 may be provided with a GPS module.
  • the first location information can also be generated by base station positioning.
  • the first terminal device 110 may be provided with a GSM chip or CDMA chip, etc.
  • the first location information can also be generated by network IP positioning.
  • the status information and the first location information may be used as part of the content of the first predetermined information.
  • the status information may be separated from the first location information by a separator.
  • one of the status information and the first location information may be used as part of the content of the first predetermined information.
  • the other may be used as an attachment to the first predetermined information.
  • a predetermined character string may be used as the content of the first predetermined information. Both the status information and the first location information may be used as attachment to the first predetermined information.
  • the second terminal device 120 may comprise a second transceiver module 15 and a status information receiving module 17 .
  • the second terminal device 120 may include smart phones, smart bracelets, smart watches, smart glasses, tablet computers, laptops or desktop computers.
  • the second terminal device may also include other smart devices capable of running software.
  • the second transceiver module 15 may receive a second predetermined signal, and may be used for transmitting second predetermined information with second location information indicating a current location of the second terminal device to the server 130 .
  • the second predetermined signal may include a character string arranged in accordance with a predetermined rule.
  • the second predetermined signal may include a voltage input received by a predetermined port of the second terminal device.
  • inputting the second predetermined signal to the second transceiver module 15 There may be many ways of inputting the second predetermined signal to the second transceiver module 15 . For example: inputting the second predetermined signal through a keyboard; inputting the second predetermined signal through a virtual key of a touch screen; detecting whether the motion direction of the second terminal device 120 suddenly changes through the arrangement of a motion detection device, such as inputting the second predetermined signal when a user shakes the second terminal device 120 .
  • receiving the input second predetermined signal by the second terminal device 120 may indicate that the status information of another authenticated terminal device needs to be obtained by the second terminal device so that authentication of the second terminal device 120 can be achieved according to the status information.
  • the second location information may indicate the current location of the second terminal device 120 .
  • the second location information can be generated by satellite positioning.
  • the second terminal device 120 may be provided with a GPS module.
  • the second location information can also be generated by base station positioning.
  • the second terminal device 120 may be provided with a GSM chip or CDMA chip, etc.
  • the second location information can also be generated by network IP positioning.
  • the second location information may be used as part or all of the second predetermined information content.
  • a predetermined character string may be used as the second predetermined information content, and the second location information may be used as an attachment to the second predetermined information.
  • the status information receiving module 17 may be used for receiving the status information.
  • the status information may include a Session ID assigned by server 130 to the first terminal device.
  • the Session ID may be added to all subsequent communications with server 130 after the second terminal device 120 receives the Session ID.
  • the first terminal device 110 , the second terminal device 120 , and the server 130 can be in the same session.
  • the status information may include account and/or password information, so the second terminal device 120 can further access data corresponding to the access level of the corresponding account.
  • a corresponding relationship may exist between the Session ID and the account, and the second terminal device 120 may also access data corresponding to the access level of account based on the Session ID.
  • the server 130 may comprise an information receiving module 19 and an information transmitting module 21 .
  • the information receiving module 19 may be used for receiving the first and second predetermined information.
  • the information receiving module 19 may include essential data communication hardware and/or essential software drivers for the hardware.
  • the information transmitting module 21 may be used for transmitting the status information to the second terminal device 120 when the first and second location information indicates the same location.
  • the server 130 may compare the locations indicated by the first and second location information.
  • the server 130 may communicate with a plurality of terminal devices, all of which can transmit location information to the server 130 , but do not necessarily have to synchronize the login information to the same account. Therefore, the server 130 may determine whether the terminal devices are in the same location based on the received location information.
  • the server 130 may confirm that the first terminal device 110 and the second terminal device 120 are co-located and both transmit the predetermined information, indicating that the status information of the first terminal device 110 is to be transmitted to the second terminal device 120 for authenticating the second terminal device 120 . The server 130 may then transmit the status information received from the first terminal device to the second terminal device 120 .
  • FIG. 5 shows an exemplary terminal device interaction method implemented by first terminal device 110 , which may comprise the following steps.
  • Step S 29 status information indicating that a terminal device is authenticated is received.
  • the terminal device when visiting websites, or running software or applications, can be authenticated based on account and password information.
  • the server may receive the account and password information and may transmit the status information indicating that the terminal device is authenticated to the terminal device.
  • the status information may be used for indicating that the terminal device is authenticated.
  • the status information may comprise a character string formed in accordance with a predetermined rule.
  • the status information may also comprise account and/or password information.
  • the status information can be a session identifier, e.g., Session ID, established between the server and the terminal device.
  • Step S 31 the terminal device may receive a first predetermined signal, the terminal device may then transmit first predetermined information with the status information and first location information indicating a current location of the terminal device to a server.
  • the first predetermined signal may include a character string arranged in accordance with a predetermined rule.
  • the first predetermined signal may include a voltage input received by a predetermined port of the terminal device.
  • the terminal device There may be many ways of inputting the first predetermined signal to the terminal device. For example: inputting the first predetermined signal to the terminal device through a keyboard; inputting the first predetermined signal to the terminal device through a virtual key of a touch screen; detecting whether a direction of motion of the terminal device suddenly changes through an arrangement of a motion detection device, such as inputting the first predetermined signal if a user shakes the terminal device.
  • the terminal device may transmit the first predetermined information to the server, so that the status information of the terminal device may be synchronized to another terminal device through the server.
  • the first location information may indicate the current location of the terminal device.
  • the first location information can be generated by satellite positioning.
  • the terminal device may be provided with a GPS module.
  • the first location information can also be generated by base station positioning.
  • the terminal device may be provided with a GSM chip or CDMA chip, etc.
  • the first location information can also be generated by network IP positioning.
  • the status information and the first location information may be used as part of the content of the first predetermined information.
  • the status information may be separated from the first location information by a separator.
  • one of the status information and the first location information may be used as part of the content of the first predetermined information.
  • the other may be used as an attachment to the first predetermined information.
  • a predetermined character string may be used as the content of the first predetermined information. Both the status information and the first location information may be used as attachment to the first predetermined information.
  • receiving the first predetermined signal may comprise: generating the first predetermined signal when detecting a sudden change in the direction of motion.
  • the terminal device may comprise a motion detection device for generating a first predetermined signal when the direction of motion of the terminal device suddenly changes, thereby inputting the first predetermined signal to the terminal device.
  • the motion detection device may be a gyroscope.
  • receiving the first predetermined signal may comprise: generating the first predetermined signal by pressing a predetermined key.
  • the terminal device may comprise a keyboard or a virtual keyboard with touch screen technologies.
  • the first predetermined signal may be an electric signal generated by pressing the predetermined key, for example, the space key, of the keyboard or virtual keyboard.
  • FIG. 6 shows another exemplary terminal device interaction method, which may comprise the followings steps.
  • Step S 33 an identification code transmitted by the server may be received, and the identification code can uniquely identify one terminal device.
  • the server may communicate with a plurality of terminal devices, one of which has been authenticated, and the user may wish to authenticate another one of the plurality of terminal devices by transmitting the status information of the authenticated terminal device to the other terminal device.
  • the terminal devices may all transmit the predetermined information to the server. So the server may need to distinguish at which terminal device in particular the user wishes to obtain the status information.
  • the server may assign an identification code to each of the plurality of terminal device, so the terminal devices can be distinguished by the identification codes.
  • Step S 35 the identification codes may be displayed.
  • the terminal devices may display the identification codes, so that the user can distinguish among different terminal devices according to the identification codes displayed by the terminal devices.
  • the authenticated terminal device can display an identification code list, and each unauthenticated terminal device displays the corresponding identification code, so the user can see the identification code displayed on a certain terminal device, and correspondingly look up the same identification code from the list displayed by the authenticated terminal device.
  • Step S 37 when a click event occurs to select an identification code or an entered identification code is received, the identification code may be transmitted to the server.
  • the user may click on the displayed identification code on the authenticated terminal device or enter the identification code, so as to confirm the terminal device to obtain the status information based on the corresponding relationship between the identification code and the terminal device.
  • the terminal device can monitor whether the click event occurs on the displayed identification code.
  • the terminal device may be provided with a touch screen, and the user can click on the position on the touch screen corresponding identification code, or click on the identification code using a mouse device.
  • the terminal device provides a keyboard, the user may enter the identification code.
  • the terminal device may transmit the identification code to the server, so that the server can transmit the status information to the terminal device corresponding to the identification code.
  • FIG. 7 shows an exemplary implementation of terminal device 110 , which may comprise a first status information receiving module 11 and a first transceiver module 13 .
  • the terminal device may include smart phones, smart bracelets, smart watches, smart glasses, tablet computers, laptops or desktop computers.
  • the terminal device may also include other smart devices capable of running software.
  • the first status information receiving module 11 may be used for receiving status information indicating that the terminal device is authenticated.
  • the terminal device 110 when visiting websites, or running software or applications, the terminal device 110 can be authenticated based on account and password information. After authentication, the server may transmit the status information indicating that the terminal device 110 is authenticated to the terminal device 110 .
  • the first status information receiving module 11 may be used for receiving the status information.
  • the status information may be used for indicating that the terminal device 110 is authenticated.
  • the status information may comprise a character string formed in accordance with a predetermined rule.
  • the status information may also comprise account and/or password information.
  • the status information can be a session identifier, e.g., Session ID, established between the server and the terminal device 110 .
  • the first transceiver module 13 may receive a first predetermined signal, and the first transceiver module 13 may then be used for transmitting first predetermined information with the status information and first location information indicating a current location to the server.
  • the first predetermined signal may include a character string arranged in accordance with a predetermined rule.
  • the first predetermined signal may include a voltage input received by a predetermined port of the terminal device 110 .
  • first predetermined signal there may be many ways of inputting the first predetermined signal to the first transceiver module 13 . For example: inputting the first predetermined signal through a keyboard; inputting the first predetermined signal through a virtual key of a touch screen; detecting whether a direction of motion of the terminal device 110 suddenly changes through an arrangement of a motion detection device, such as inputting the first predetermined signal if a user shakes the terminal device 110 .
  • receiving the input first predetermined signal by the first transceiver module 13 may indicate that the status information of the first terminal device need to be transmitted to another terminal device, so that the authentication of the other terminal device can be completed according to the status information.
  • the first transceiver module 13 may transmit the first predetermined information to the server, so that the server may transmit the status information of the first terminal device to another terminal device.
  • the first location information may indicate the current location of the terminal device 110 .
  • the first location information can be generated by satellite positioning.
  • the terminal device 110 may be provided with a GPS module.
  • the first location information can also be generated by base station positioning.
  • the terminal device 110 may be provided with a GSM chip or CDMA chip, etc.
  • the first location information can also be generated by network IP positioning.
  • the status information and the first location information may be used as part of the content of the first predetermined information.
  • the status information may be separated from the first location information by a separator.
  • one of the status information and the first location information may be used as part of the content of the first predetermined information.
  • the other may be used as an attachment to the first predetermined information.
  • a predetermined character string may be used as the content of the first predetermined information. Both the status information and the first location information may be used as attachment to the first predetermined information.
  • FIG. 8 shows an exemplary terminal device interaction method implemented by second terminal device 120 , which may comprise the following steps.
  • Step S 39 when a second predetermined signal is received, second predetermined information with second location information indicating a current location may be transmitted to a server.
  • the second predetermined signal may include a character string arranged in accordance with a predetermined rule.
  • the second predetermined signal may include a voltage input received by a predetermined port of a terminal device.
  • inputting the second predetermined signal to the terminal device There may be many ways of inputting the second predetermined signal to the terminal device. For example: inputting the second predetermined signal to the terminal device through a keyboard; inputting the second predetermined signal to the terminal device through a virtual key of a touch screen; detecting whether a direction of motion of the terminal device suddenly changes through an arrangement of a motion detection device, such as inputting the second predetermined signal to the terminal device if a user shakes the terminal device.
  • receiving the input second predetermined signal by the second terminal device may indicate that the status information of another authenticated terminal device needs to be obtained by the second terminal device so that authentication of the second terminal device can be completed according to the status information.
  • the second location information may indicate the current location of the terminal device.
  • the second location information can be generated by satellite positioning.
  • the terminal device may be provided with a GPS module.
  • the second location information can also be generated by base station positioning.
  • the terminal device may be provided with a GSM chip or CDMA chip, etc.
  • the second location information can also by generated by network IP positioning.
  • the second location information may be used as part or all of the second predetermined information content.
  • a predetermined character string may be used as the second predetermined information content, and the second location information may be used as an attachment to the second predetermined information.
  • Step S 41 the status information indicating that the terminal device is authenticated may be received.
  • the status information may be used for indicating the status that a terminal device is authenticated.
  • the status information can comprise a character string formed in accordance with a predetermined rule.
  • the status information may also comprise account and/or password information.
  • the status information can be a session identifier, e.g., Session ID, established between the server and the terminal device.
  • the authentication can be completed based on the received status information, without requiring a user to re-enter the account and password information to the terminal device, thereby improving convenience to the user.
  • the status information may include the Session ID assigned by the server to the authenticated terminal device.
  • the Session ID may be added to all subsequent communications with the server after the current terminal device receives the Session ID.
  • the terminal device transmitting the status information, the current terminal device, and the server may be in the same session.
  • the status information may include account and/or password information, so the terminal device can further access data corresponding to the access level of corresponding account.
  • a corresponding relationship may exist between the Session ID and the account, and the terminal device may also access data corresponding to the access level of the account based on the Session ID.
  • receiving the second predetermined signal may comprise: generating the second predetermined signal when detecting a sudden change in the direction of motion.
  • the terminal device may comprise a motion detection device for generating a second predetermined signal when the direction of motion of the terminal device suddenly changes, thereby inputting the second predetermined signal to the terminal device.
  • the motion detection device may be a gyroscope.
  • receiving the input second predetermined signal may comprise: generating the second predetermined signal by clicking a predetermined key.
  • the terminal device may comprise a keyboard or a virtual keyboard with touch screen technologies.
  • the second predetermined signal may be an electric signal generated by pressing the predetermined key, for example, the space key, of the keyboard or virtual keyboard.
  • FIG. 9 shows another exemplary terminal device interaction method, which may comprise the following steps.
  • Step S 43 an identification code transmitted by the server may be received, and the identification code can uniquely identify the second terminal device.
  • the server may communicate with a plurality of terminal devices in the same location, one of which is authenticated, and the user may wish to authenticate one of the plurality of terminal devices by transmitting the status information of the authenticated terminal device to the other terminal device.
  • the terminal devices may all transmit the predetermined information to the server. So the server may need to distinguish at which terminal device in particular the user wishes to obtain the status information.
  • the server may assign an identification code to each of the plurality of terminal device, so that the terminal devices can be distinguished by the identification codes.
  • Step S 45 the identification codes may be displayed.
  • the terminal device may display the identification code, so that the user can select, confirm, and/or designate the terminal device to obtain the status information according to the identification code displayed by the terminal device.
  • the identification code corresponding to each of the plurality of terminal devices can be displayed.
  • FIG. 10 shows an exemplary implementation of terminal device 120 , which may comprise a second transceiver module 15 and a status information receiving module 17 .
  • the terminal device 120 may include smart phones, smart bracelets, smart watches, smart glasses, tablet computers, laptops or desktop computers.
  • the terminal device may also include other smart devices capable of running software.
  • the second transceiver module 15 may be used for transmitting second predetermined information to the server when receiving a second predetermined signal with second location information indicating a current location.
  • the second predetermined signal may include a character string arranged in accordance with a predetermined rule.
  • the second predetermined signal may include a voltage input received by a predetermined port of the terminal device.
  • inputting the second predetermined signal to the second transceiver module 15 There may be many ways of inputting the second predetermined signal to the second transceiver module 15 . For example: inputting the second predetermined signal through a keyboard; inputting the second predetermined signal through a virtual key of a touch screen; detecting whether a direction of motion of the terminal device 120 suddenly changes through an arrangement of a motion detection device, such as inputting the second predetermined signal if the user shakes the terminal device.
  • receiving the input second predetermined signal by the second terminal device 120 may indicate that the status information of another authenticated terminal device needs to be obtained by the second terminal device so that authentication of the second terminal device 120 can be completed according to the status information.
  • the second location information may indicate the current location of the terminal device 120 .
  • the second location information can be generated by satellite positioning.
  • the terminal device 120 may be provided with a GPS module.
  • the second location information can also be generated by base station positioning.
  • the terminal device 120 may be provided with a GSM chip or CDMA chip, etc.
  • the second location information can also be generated by network IP positioning.
  • the second location information may be used as part or all of the second predetermined information content.
  • a predetermined character string may be used as the second predetermined information content, and the second location information may be used as an attachment to the second predetermined information.
  • the status information receiving module 17 may be used for receiving the status information.
  • the status information may be used for indicating the status that a terminal device is authenticated.
  • the status information may comprise a character string formed in accordance with a predetermined rule.
  • the status information may also comprise account and/or password information.
  • the status information can be a session identifier, e.g., Session ID, established between the server and the terminal device.
  • the status information may include the Session ID assigned by the server to the authenticated terminal device.
  • the Session ID may be added to all the subsequent communications with the server after the current terminal device 120 receives the Session ID.
  • the terminal device transmitting the status information, the current terminal device 120 , and the server can be in the same session.
  • the status information may include account and/or password information, so the terminal device 120 can further access data corresponding to the access level of the account.
  • a corresponding relationship may exist between the Session ID and the account, and the second terminal device 120 may also access data corresponding to the access level of the account based on the Session ID.
  • FIG. 11 shows another exemplary terminal device interaction method, which may comprise the following steps.
  • Step S 47 first predetermined information with status information indicating that a first terminal device is authenticated and first location information indicating a current location of the first terminal device may be received; second predetermined information with second location information indicating a current location of a second terminal device may be received.
  • the status information may be used for indicating that the first terminal device is authenticated.
  • the status information may comprise a character string formed in accordance with a predetermined rule.
  • the status information may also comprise account and/or password information.
  • the status information can be a session identifier, e.g., Session ID, established between the server and the first terminal device.
  • receiving the first predetermined information by the server may indicate that the status information of the first terminal device needs to be obtained by the second terminal device, so that authentication of the second terminal device is completed according to the status information.
  • the status information and the first location information may be used as part of content of the first predetermined information.
  • the status information may be separated from the first location information by a separator.
  • one of the status information and the first location information may be used as part of the content of the first predetermined information.
  • the other may be used as an attachment to the first predetermined information.
  • both the status information and the first location information may be used as attachments to the first predetermined information.
  • a predetermined character string may be used as the content of the first predetermined information.
  • the first location information may indicate the location of the first terminal device.
  • the first location information can be generated by satellite positioning.
  • the first terminal device may be provided with a GPS module.
  • the first location information can also be generated by base station positioning.
  • the first terminal device may be provided with a GSM chip or CDMA chip, etc.
  • the first location information can also be generated by network IP positioning.
  • receiving the second predetermined information by the server may indicate that the status information of the first terminal device needs to be obtained by the second terminal device.
  • the second location information may be used as the content of the second predetermined information.
  • the second location information may be used as an attachment to the second predetermined information.
  • a predetermined character string may be used as the content of the second predetermined information.
  • the second location information may indicate the current location of the second terminal device.
  • the second location information can be generated by satellite positioning.
  • the second terminal device may be provided with a GPS module.
  • the second location information can also be generated by base station positioning.
  • the second terminal device may be provided with a GSM chip or CDMA chip, etc.
  • the second location information can also by generated by network IP positioning.
  • Step S 49 when the first location information and the second location information indicate the same location, the status information may be transmitted to the second terminal device.
  • the server may compare the locations indicated by the first and second location information.
  • the server may communicate with a plurality of terminal devices, all of which can transmit location information to the server, but do not necessarily have to obtain the status information of the same terminal device. Therefore, the server may determine whether the terminal devices are in the same location according to the received location information.
  • the server may confirm that the first and second terminal devices are co-located and both transmit predetermined information, indicating that the status information of the first terminal device is to be transmitted to the second terminal device for authenticating the second terminal device. The server may then transmit the status information received from the first terminal device to the second terminal device.
  • the first predetermined information may be provided with a first time stamp.
  • the second predetermined information may be provided with a second time stamp.
  • the server may transmit the status information to the second terminal device.
  • the first time stamp of the first predetermined information may be the time for the first terminal device to start transmitting the first predetermined information. In another example, the first time stamp of the first predetermined information may be the time when the first terminal device finishes transmitting the first predetermined information. In yet another example, the first time stamp of the first predetermined information may be the time for the server to start receiving the first predetermined information. In yet another example, the first time stamp of the first predetermined information may be the time when the server finishes receiving the first predetermined information.
  • the second time stamp of the second predetermined information may be the time for the second terminal device to start transmitting the second predetermined information. In another example, the second time stamp of the second predetermined information may be the time when the second terminal device finishes transmitting the second predetermined information. In yet another example, the second time stamp of the second predetermined information may be the time for the server to start receiving the second predetermined information. In yet another example, the second time stamp of the second predetermined information may be the completion time when the server finishes receiving the second predetermined information.
  • the server may identify the second terminal device that needs to obtain the status information based on whether the first and second location information are in the same location and whether the difference between the first and second time stamps is within a predetermined range.
  • the predetermined range may be set in the server in advance.
  • the predetermined range may be 0 to 50 micro-seconds.
  • FIG. 12 shows an exemplary implementation of step S 49 of transmitting the status information to the second terminal device, which may comprise the following steps.
  • Step S 51 an identification code may be assigned to the second terminal device, and the identification code can uniquely identify one second terminal device.
  • the server may communicate with a plurality of second terminal devices, the plurality of second terminal devices and the first terminal device may be in the same location, and the user may wish to authenticate one of the plurality of second terminal devices by transmitting the status information of the first terminal device to that second terminal device.
  • the second terminal devices may all transmit the predetermined information to the server. So the server may need to distinguish at which second terminal device in particular the user wishes to obtain the status information.
  • the server may assign an identification code to each of the plurality of second terminal devices, so the second terminal devices can be distinguished by the identification codes.
  • the identification codes may be generated by the server based on a predetermined algorithm.
  • the predetermined algorithm may include a random function or a hash algorithm.
  • Step S 53 the identification codes may be transmitted to the identified second terminal devices.
  • the second terminal device may display the identification code, so that the user can select, confirm, and/or designate the terminal device to obtain the status information according to the identification code displayed by the terminal device.
  • Step 55 the identification codes may be transmitted to the first terminal device.
  • the first terminal device may display the identification code, so that the user can distinguish between different second terminal devices according to the identification code displayed by the first and/or the second terminal devices.
  • the first terminal device can display an identification code list, and each second terminal device displays the corresponding identification code, so the user can see the identification code displayed on a certain second terminal device, and correspondingly look up the same identification code from the list displayed by the first terminal device.
  • the user can select, confirm, and/or designate the second terminal device to obtain the status information by clicking from the identification code list displayed by the first terminal device.
  • the first terminal device can monitor whether the click event occurs on the displayed identification code.
  • the first terminal device may be provided with a touch screen, and the user can click on a position on the touch screen corresponding to the identification code, or click on the identification code using a mouse device.
  • Step S 57 the identification codes transmitted by the first terminal device and/or the second terminal device may be received.
  • the user can enter the corresponding identification code of the second terminal device needing to obtain the status information to the first terminal device, so the first terminal device can feed the identification code back to the server so that the sever confirms the second terminal device needing to receive the status information.
  • the user can also enter the corresponding identification code of the second terminal device needing to obtain the status information to the second terminal device, and the second terminal device transmits the identification code to the server, so that the server confirms the second terminal device that needs to receive the status information.
  • the user can also enter the corresponding identification code of the second terminal device that needs to obtain the status information to the first and second terminal device, and the first and second terminal device respectively feed the identification code back to the server.
  • Step S 59 the status information may be transmitted to the second terminal device identified by the received identification code.
  • the first terminal device may receive the identification code transmitted by the server, the first terminal may then transmit one of the received identification codes to the server according to an operation of the user. Accordingly, the second terminal device that needs to obtain the status information may be specified.
  • the second terminal devices may display the identification codes after receiving the identification codes.
  • the user may input the identification code to the first terminal device, and thereby confirming the terminal device that needs to receive the status information based on the identification code.
  • the identification code displayed by the second terminal device may be transmitted to the first terminal device.
  • the first terminal device may then transmit the identification code to the server.
  • the server may transmit the status information to the second terminal device corresponding to the identification code based on the corresponding relationship between the identification code and the second terminal device.
  • FIG. 13 shows an exemplary implementation of server 130 , which may comprise an information receiving module 19 and an information transmitting module 21 .
  • the information receiving module 19 may be used for receiving first predetermined information with status information indicating that the first terminal device completes login and first location information indicating a current location of the first terminal device, and receiving second predetermined information with second location information indicating a current location of the second terminal device.
  • the status information may be used for indicating the status that the first terminal device is authenticated.
  • the status information may comprise a character string formed in accordance with a predetermined rule.
  • the status information may also comprise account and/or password information.
  • the status information can be a session identifier, e.g., Session ID, established between the server and the first terminal device.
  • receiving the first predetermined information by the information receiving module 19 may indicate that the status information of the first terminal device needs to be obtained by the second terminal device, so that the authentication of the second terminal device can be completed according to the status information.
  • the status information and the first location information may be used as the content of the first predetermined information.
  • the status information may be separated from the first location information.
  • one of the status information and the first location information may be used as the content of the first predetermined information.
  • the other may be used as an attachment to the first predetermined information.
  • a predetermined character string may be used as the content of the first predetermined information.
  • both the status information and the first location information may be used as attachments to the first predetermined information.
  • the first location information may indicate the current location of the first terminal device.
  • the first location information can be generated by satellite positioning.
  • the first terminal device may be provided with a GPS module.
  • the first location information can also be generated by base station positioning.
  • the first terminal device may be provided with a GSM chip or CDMA chip, etc.
  • the first location information may also by generated by network IP positioning.
  • receiving the second predetermined information by the information receiving module 19 may indicate that the status information of the first terminal device needs to be obtained by the second terminal device.
  • the second location information may be used as the content of the second predetermined information.
  • the second location information may be used as an attachment of the second predetermined information.
  • a predetermined character string may be used as the content of the second predetermined information.
  • the second location information may indicate the location of the second terminal device.
  • the second location information may be generated by satellite positioning.
  • the second terminal device may be provided with a GPS module.
  • the second location information can also be generated by base station positioning.
  • the second terminal device may be provided with a GSM chip or CDMA chip, etc.
  • the second location information may also by generated by network IP positioning.
  • the information transmitting module 21 may be used for transmitting the status information to the second terminal device when the first location information and the second location information indicate the same location.
  • the server 130 may compare the locations indicated by the first and second location information.
  • the server 130 may communicate with a plurality of terminal devices, all of which can transmit location information to the server 130 , but do not necessarily have to synchronize the login information to the same account. Therefore, the server 130 may determine whether the terminal devices are in the same location based on the received location information.
  • the server 130 may confirm that the first terminal device and the second terminal device are co-located and both transmit the predetermined information, indicating that the status information of the first terminal device is to be transmitted to the second terminal device for authenticating the second terminal device.
  • the information transmitting module 21 may then transmit the status information received from the first terminal device to the second terminal device at this time.
  • this terminal device and another terminal device that needs to be authenticated transmit predetermined information to a server.
  • the server transmits the status information of the authenticated terminal device to the terminal device that needs to be authenticated, so that the authentication can be completed based on the status information, and the user can avoid re-entering account and password information and enjoy the convenience.
  • a computer-readable storage medium refers to any type of physical memory on which information or data readable by a processor may be stored.
  • a computer-readable storage medium may store instructions for execution by one or more processors, including instructions for causing the processor(s) to perform steps or stages consistent with the embodiments described herein.
  • the term “computer-readable medium” should be understood to include tangible items and exclude carrier waves and transient signals, i.e., be non-transitory. Examples include RAM, ROM, volatile memory, nonvolatile memory, hard drives, CD ROMs, DVDs, flash drives, disks, and any other known physical storage media.

Abstract

System and method are disclosed for providing authentication of a terminal device. One embodiment includes a method implemented by a first terminal device. The method may include receiving first location information and receiving a first predetermined signal. The method may also include transmitting status information and the first location information to a server upon receiving the first predetermined signal to allow the server to compare the first location information with second location information received from a second terminal device and to allow the server to transmit the status information to the second terminal device. The status information may indicate that the first terminal device is authenticated and the first location information may indicate a current location of the first terminal device.

Description

CROSS REFERENCE TO RELATED APPLICATION
The present application is a continuation of U.S. patent application Ser. No. 16/777,219, filed on Jan. 30, 2020, which is a continuation of U.S. patent application Ser. No. 16/711,379 filed Dec. 11, 2019, which is a divisional of Ser. No. 14/885,584, filed on Oct. 16, 2015, which is based upon and claims the benefits of priority to Chinese Application No. 201410553465.X, filed Oct. 17, 2014, all of which are incorporated herein by reference in their entireties.
TECHNICAL FIELD
The present application relates to the field of data communications, and more particularly, to systems and methods for interaction between terminal devices and between a terminal device and a server.
BACKGROUND
A user may visit websites or use applications (e.g., software applications installed on a desktop/laptop computer or on a mobile device) as daily routines. Usually, if the user has an account with a website or an application, the user may log in to the website or application with the account and corresponding password. Based on the login information, the user may be authenticated by the website or application, and the user may then access data in accordance with appropriate access levels.
In some cases, the user may wish to login to the website or application on two or more terminal devices with the same account. For example, the user may wish to login to an account from a computer (e.g., desktop or laptop computer) after logging in to the same account on a website or an application on a mobile phone. On the other hand, the user may wish to log in to an account from a mobile phone after logging in to the same account on a computer.
Currently, after logging in to one terminal device (e.g., a desktop/laptop computer or a mobile device), the user still needs to re-enter the account and password information in order to be authenticated again when logging in to another terminal device. This operation is duplicative and time consuming, and fails to meet the growing demand for easy and convenient operations.
SUMMARY
One aspect of the present disclosure is directed to a method, implemented by a first terminal device, for providing authentication on a second terminal device. The method may includes receiving, by a processor device of the first terminal device, first location information and receiving, by the processor device, a first predetermined signal. The method may also include transmitting status information and the first location information to a server upon receiving the first predetermined signal to allow the server to compare the first location information with second location information received from the second terminal device and to allow the server to transmit the status information to the second terminal device. The status information may indicate that the first terminal device is authenticated and the first location information indicates a current location of the first terminal device.
Another aspect of the present disclosure is directed to a method, implemented by a processor device of a server, for providing authentication. The method may includes receiving, from a first terminal device, status information and first location information. The status information may indicate that the first terminal device is authenticated and the first location information may indicate a current location of the first terminal device. The method may also include receiving, from a second terminal device, second location information indicating a current location of the second terminal device. The method may further include comparing the first and second location information to determine whether the current locations of the first and second terminal devices are substantially the same. When it is determined that the current locations of the first and second terminal devices are substantially the same, the method may include transmitting the status information to the second terminal device to authenticate the second terminal device.
Another aspect of the present disclosure is directed to a terminal device. The terminal device may include a transceiver device that transmits or receives information from a server. The transceiver device may also include a processor device. The processor device may receive first location information and may receive a first predetermined signal. The processor device may also control the transceiver to transmit status information and the first location information to the server upon receiving the first predetermined signal to allow the server to compare the first location information with second location information received from a second terminal device and to allow the server to transmit the status information to the second terminal device. The status information may indicate that the first terminal device is authenticated and the first location information may indicate a current location of the first terminal device.
Another aspect of the present disclosure is directed to a server. The server may include a transceiver device that transmits or receives information from first and second terminal devices. The server may also include a processor device. The processor device may receive, from a first terminal device, status information and first location information. The status information may indicate that the first terminal device is authenticated and the first location information may indicate a current location of the first terminal device. The processor device may also receive, from a second terminal device, second location information indicating a current location of the second terminal device. The processor device may further compare the first and second location information to determine whether the current locations of the first and second terminal devices are substantially the same. When it is determined that the current locations of the first and second terminal devices are substantially the same, the processor device may control the transceiver to transmit the status information to the second terminal device to authenticate the second terminal device.
Additional objects and advantages of the present disclosure will be set forth in part in the following detailed description, and in part will be obvious from the description, or may be learned by practice of the present disclosure. The objects and advantages of the present disclosure will be realized and attained by means of the elements and combinations particularly pointed out in the appended claims.
It is to be understood that the foregoing general description and the following detailed description are exemplary and explanatory only, and are not restrictive of the invention, as claimed.
BRIEF DESCRIPTION OF THE DRAWINGS
The accompanying drawings, which constitute a part of this specification, illustrate several embodiments and, together with the description, serve to explain the disclosed principles.
FIG. 1 is a schematic flow diagram of an exemplary terminal device interaction method, according to an embodiment of the present application;
FIG. 2 is a flow diagram of an exemplary terminal device interaction method, according to an embodiment of the present application;
FIG. 3 is a flow diagram of another exemplary terminal device interaction method, according to an embodiment of the present application.
FIG. 4 is a functional block diagram of an exemplary terminal device interaction system, according to an embodiment of the present application;
FIG. 5 is a flow diagram of an exemplary terminal device interaction method, according to an embodiment of the present application;
FIG. 6 is a flow diagram of another exemplary terminal device interaction method, according to an embodiment of the present application;
FIG. 7 is a functional block diagram of an exemplary terminal device, according to an embodiment of the present application;
FIG. 8 is a flow diagram of an exemplary terminal device interaction method, according to an embodiment of the present application;
FIG. 9 is a flow diagram of an exemplary terminal device interaction method, according to an embodiment of the present application;
FIG. 10 is a functional block diagram of an exemplary terminal device, according to an embodiment of the present application;
FIG. 11 is a flow diagram of an exemplary terminal device interaction method, according to an embodiment of the present application;
FIG. 12 is a flow diagram of an exemplary terminal device interaction method, according to an embodiment of the present application;
FIG. 13 is a functional block diagram of an exemplary server, according to an embodiment of the present application.
DETAILED DESCRIPTION
Reference will now be made in detail to exemplary embodiments of the invention, examples of which are illustrated in the accompanying drawings. The following description refers to the accompanying drawings in which the same numbers in different drawings represent the same or similar elements unless otherwise represented. The implementations set forth in the following description of exemplary embodiments consistent with the present invention do not represent all implementations consistent with the invention. Instead, they are merely examples of systems and methods consistent with aspects related to the invention as recited in the appended claims.
FIG. 1 shows a flow diagram of an exemplary method 1 for a terminal device interaction method provided by an embodiment of the application. Method 1 may comprise a series of steps. Some steps may be optional.
In step S11, a first terminal device may receive status information indicating that the first terminal device is authenticated.
The first terminal device may include smart phones, smart bracelets, smart watches, smart glasses, tablet computers, laptops, or desktop computers. The first terminal device may also include other smart devices capable of running software.
In one example, when visiting websites, or running software or applications, the first terminal device can be authenticated based on account and password information. After authentication, a server may transmit the status information indicating that the first terminal device is authenticated to the first terminal device.
In some embodiments, the status information may be used for indicating the status that the first terminal device is authenticated. For example, the status information may comprise a character string formed in accordance with a predetermined rule. The status information may also comprise account and/or password information. Specifically, for example, the status information can be a session identifier, e.g., Session ID, established between the server and the first terminal device.
In step S12, the first terminal device may receive a first predetermined signal. The first terminal device may then transmit first predetermined information, the status information, and/or first location information indicating a current location of the first terminal device to a server. Similarly, a second terminal device may receive a second predetermined signal, and may transmit second predetermined information with second location information indicating a current location of the second terminal device to the server.
In one embodiment, the first predetermined signal may include a character string arranged in accordance with a predetermined rule. In another embodiment, the first predetermined signal may include a voltage input received by a predetermined port of the first terminal device.
There may be many ways of inputting the first predetermined signal to the first terminal device. For example: inputting the first predetermined signal to the first terminal device through a keyboard; inputting the first predetermined signal to the first terminal device through a virtual key of a touch screen; detecting whether a direction of motion of the first terminal device suddenly changes through an arrangement of a motion detection device, such as inputting the first predetermined signal to the first terminal device if a user shakes the first terminal device.
In some embodiments, when the first terminal device receives the input first predetermined signal, which may indicate a situation in which the first terminal device's authentication is potentially to be synchronized to another terminal device, the first terminal device may transmit the first predetermined information to the server, so that the status of the first terminal device (e.g., being authenticated) may be synchronized to another terminal device through the server.
The first location information may indicate the current location of the first terminal device. The first location information can be generated by satellite positioning. For example, the first terminal device may be provided with a Global Positioning System (GPS) module. The first location information can also be generated by base station positioning. For example, the first terminal device may be provided with a Global System for Mobile Communication (GSM) chip or a Code Division Multiple Access (CDMA) chip, etc. The first location information can also be generated by network IP positioning.
There may be many ways of arranging the first predetermined information, the status information, and the first location information. For example, the status information and the first location information may be used as part of the content of the first predetermined information. The status information may be separated from the first location information by a separator. In another example, one of the status information and the first location information may be used as part of the content of the first predetermined information. The other may be used as an attachment to the first predetermined information. In yet another example, a predetermined character string may be used as the content of the first predetermined information. Both the status information and the first location information may be used as attachment to the first predetermined information.
The second terminal device may include smart phones, smart bracelets, smart watches, smart glasses, tablet computers, laptops or desktop computers. The second terminal device may also be other smart devices capable of running software.
In one embodiment, the second predetermined signal may include a character string arranged in accordance with a predetermined rule. In another embodiment, the second predetermined signal may also include a voltage input received by a predetermined port of the second terminal device.
There may be many ways of inputting the second predetermined signal to the second terminal device. For example: inputting the second predetermined signal to the second terminal device through a keyboard; inputting the second predetermined signal to the second terminal device through a virtual key of a touch screen; detecting whether a direction of motion of the second terminal device suddenly changes through an arrangement of a motion detection device, such as inputting the second predetermined signal to the second terminal device if a user shakes the second terminal device.
In some embodiments, receiving the input second predetermined signal by the second terminal device may indicate that the status information of another authenticated terminal device needs to be obtained by the second terminal device so that authentication of the second terminal device can be completed according to the status information.
The second location information may indicate the current location of the second terminal device. The second location information can be generated by satellite positioning. For example, the second terminal device may be provided with a GPS module. The second location information can also be generated by base station positioning. For example, the second terminal device may be provided with a GSM chip or CDMA chip, etc. The second location information can also be generated by network IP positioning.
There may be many ways of arranging the second predetermined information and the second location information. For example, the second location information may be used as part of the second predetermined information content. In another example, a predetermined character string may be used as the second predetermined information content, and the second location information may be used as an attachment to the second predetermined information.
In step S13, the server may determine whether the first location information and the second location information indicate substantially the same location. If it is determined that the first location information and the second location information indicate substantially the same location, the server may transmit the status information received from the first terminal device to the second terminal device.
In some embodiments, the server may compare the locations indicated by the first and second location information. The server may communicate with a plurality of terminal devices, all of which can transmit location information to the server, but do not necessarily have to synchronize login status information to the same account. Therefore, the server may determine whether the terminal devices are at the same location based on the received location information.
In some embodiments, if it is determined that the first and second location information indicate substantially the same location, the server may confirm that the first and second terminal devices are co-located and both transmit the predetermined information, indicating that the status information of the first terminal device is to be transmitted to the second terminal device for authenticating the second terminal device. The server may then transmit the status information received from the first terminal device to the second terminal device.
In step S14, the second terminal device may receive the status information from the server. The second terminal device may then be authenticated using the received status information.
In some embodiments, after the second terminal device receives the status information, authentication and other tasks can be completed based on the received status information, without requiring a user to re-enter the account and password information to the second terminal device, thereby improving convenience to the user. The status information may include the Session ID assigned by the server to the first terminal device. The Session ID may be added to all subsequent communications with the server after the second terminal device receives the Session ID. The first terminal device, the second terminal device, and the server may be in the same session. Furthermore, the status information may include account and/or password information, so the second terminal device can further access data corresponding to the access level of the account. Moreover, a corresponding relationship may exist between the Session ID and the account, and the second terminal device may also access data corresponding to the access level of the account based on the Session ID.
According to the above described method, a first terminal device may be authenticated first. The first terminal device and a second terminal device to be authenticated may transmit predetermined information to a server. The server may then transmit status information of the authenticated terminal device to the second terminal device to be authenticated. Authentication of the second terminal device may be completed according to the status information. This method may avoid re-entering the account and password and improve convenience to the user.
The first terminal device may comprise a motion detection device for generating a first predetermined signal when the direction of motion of the first terminal device suddenly changes. The second terminal device may comprise a keyboard for generating a second predetermined signal when a predetermined key of the keyboard is pressed. The first and second predetermined signals may be generated at substantially the same time when, for example, a user uses the first terminal device to press or click the predetermined key of the second terminal device.
When the predetermined key of the keyboard of the second terminal device is pressed by the first terminal device, the direction of motion of the first terminal device may suddenly change during the pressing process, and the motion detection device can generate the first predetermined signal based on the change in the direction of motion. Therefore, the operation of inputting the first predetermined signal to the first terminal device can be achieved. Similarly, when the predetermined key of the second terminal device is pressed by the first terminal device, the predetermined key may generate the second predetermined signal, e.g., the operation of inputting the second predetermined signal to the second terminal device can be achieved.
FIG. 2 shows an exemplary method of authenticating a terminal device, which may comprise the following steps:
Step S15: The server may compare the first and second location information to determine whether they indicate substantially the same location. When the first location information and the second location information indicate substantially the same location, the server may generate an identification code which can uniquely identify the second terminal device and to indicate the identity of the terminal device, and transmit the identification code to the second terminal device.
In some embodiments, the server may communicate with a plurality of second terminal devices, the plurality of second terminal devices and the first terminal device may be co-located in the same of substantially the same location, and the user may wish to authenticate one of the plurality of second terminal devices by transmitting the status information of the first terminal device to that second terminal device. Moreover, the second terminal devices may all transmit the predetermined information to the server. So the server may need to distinguish at which second terminal device in particular the user wishes to obtain the status information. To prevent the server from transmitting the status information to second terminal devices that should not receive the status information, the server may assign an identification code to each of the plurality of second terminal device, so that the second terminal devices can be distinguished by the identification codes.
In some embodiments, the identification codes can be generated by the server according to a predetermined algorithm. For example, the predetermined algorithm can include a random function, a hash algorithm, etc.
Step S17: The second terminal device may display the identification code.
In some embodiments, the second terminal device may display the identification code, so that the user can select, confirm, and/or designate the second terminal device to obtain the status information according to the identification code displayed by the second terminal device. When there are a plurality of second terminal devices, the identification code corresponding to each of the plurality of second terminal devices can be displayed.
Step S19: When receiving the selected identification code, the first terminal device and/or the second terminal device may transmit the selected identification code to the server.
In some embodiments, after the corresponding identification code is displayed by the second terminal device, the user can enter the corresponding identification code of the second terminal device that needs to obtain the status information to the first terminal device, so that the first terminal device can feed the identification code back to the server and the sever can identify the second terminal device that needs to receive the status information. The user can also enter the corresponding identification code of the second terminal device that needs to obtain the status information to the second terminal device, and the second terminal device transmits the identification code to the server, so that the server can identify the second terminal device that needs to receive the status information. Moreover, the user can also enter the corresponding identification code of the second terminal device that needs to obtain the status information to both the first and second terminal devices, and the first and second terminal devices each feed the identification code back to the server.
In some embodiments, after receiving the identification code, the first terminal device or the second terminal device may transmit the identification code to the server for further processing.
Step S21: after receiving the identification code, the server may transmit the status information to the second terminal device identified by the identification code.
In some embodiments, after receiving the identification code transmitted by the first terminal device, the server can identify the second terminal device that needs to receive the status information based on the identification code, and transmit the status information to the second terminal device.
FIG. 3 shows another exemplary terminal device interaction method, which may also comprise the following steps.
Step S23: the server may transmit the identification code to the first terminal device.
In some embodiments, the server may transmit the identification code to the first terminal device after generating the identification code.
Step S25: the first terminal device may display the identification code.
In some embodiments, the first terminal device may display the identification code, so that the user can distinguish among different second terminal devices according to the identification codes displayed on the first terminal device. When there are a plurality of second terminal devices, the first terminal device can display an identification code list, and each second terminal device may display the corresponding identification code, so the user can see the identification code displayed on a certain second terminal device, and correspondingly look up the same identification code from the list displayed by the first terminal device.
Step S27: when a click event occurs to select an identification code displayed by the first terminal device, the first terminal device may transmit the identification code to the server.
In some embodiments, the user can identify the second terminal device that needs to obtain the status information by clicking on the corresponding identification code displayed by the first terminal device to select that second terminal device.
In some embodiments, the first terminal device can monitor whether a click event occurs to the displayed identification code. For example, the first terminal device may be provided with a touch screen, and the user can click on a position on the touch screen corresponding to the identification code, or click on the identification code using a mouse device.
FIG. 4 shows an exemplary implementation of a terminal device interaction system 100, which may comprise a first terminal device 110, a second terminal device 120 and a server 130.
The first terminal device 110 may comprise a first status information receiving module 11 and a first transceiver module 13. As used herein, a module may be implemented by a processor device of a terminal device or a server. For example, the processor device may execute software instructions stored on a memory device to perform the functions prescribed by the module.
In some embodiments, the first terminal device may include smart phones, smart bracelets, smart watches, smart glasses, tablet computers, laptops, or desktop computers. The first terminal device may also include other smart devices capable of running software.
The first status information receiving module 11 may be used for receiving status information indicating that the first terminal device is authenticated.
In one example, when visiting websites, or running software or applications, the first terminal device 110 can be authenticated based on account and password information. After authentication, the server may transmit the status information indicating that the first terminal device 110 is authenticated to the first terminal device 110, and the first status information receiving module 11 may be used for receiving the status information.
In some embodiments, the status information may be used for indicating that the first terminal device 110 is authenticated. For example, the status information may comprise a character string formed in accordance with a predetermined rule. The status information may also comprise account and/or password information. Specifically, for example, the status information may be a session identifier, e.g., Session ID, established between the server and the first terminal device 110.
The first transceiver module 13 may receive a first predetermined signal, and may be used for transmitting first predetermined information with the status information and first location information indicating a current location to the server 130.
In some embodiments, the first predetermined signal may include a character string arranged in accordance with a predetermined rule. In another embodiment, the first predetermined signal may include a voltage input received by a predetermined port of the first terminal device 110.
There may be many ways of inputting the first predetermined signal to the first transceiver module 13. For example: inputting the first predetermined signal through a keyboard; inputting the first predetermined signal through a virtual key of a touch screen; detecting whether a direction of motion of the first terminal device 110 suddenly changes through an arrangement of a motion detection device, such as inputting the first predetermined signal when a user shakes the first terminal device 110.
In some embodiments, if the first transceiver module 13 receives the input first predetermined signal, which may indicate a situation in which the first terminal device's authentication is potentially to be synchronized to another terminal device, the first transceiver module 13 may transmit the first predetermined information to the server 130, so that the status information of the first terminal device 110 may be synchronized to another terminal device (e.g., second terminal device 120) through the server 130.
The first location information may indicate the current location of the first terminal device 110. The first location information can be generated by satellite positioning. For example, the first terminal device 110 may be provided with a GPS module. The first location information can also be generated by base station positioning. For example, the first terminal device 110 may be provided with a GSM chip or CDMA chip, etc. The first location information can also be generated by network IP positioning.
There may be many ways of arranging the first predetermined information, the status information, and the first location information. For example: the status information and the first location information may be used as part of the content of the first predetermined information. The status information may be separated from the first location information by a separator. In another example, one of the status information and the first location information may be used as part of the content of the first predetermined information. The other may be used as an attachment to the first predetermined information. In yet another example, a predetermined character string may be used as the content of the first predetermined information. Both the status information and the first location information may be used as attachment to the first predetermined information.
The second terminal device 120 may comprise a second transceiver module 15 and a status information receiving module 17.
In some embodiments, the second terminal device 120 may include smart phones, smart bracelets, smart watches, smart glasses, tablet computers, laptops or desktop computers. The second terminal device may also include other smart devices capable of running software.
The second transceiver module 15 may receive a second predetermined signal, and may be used for transmitting second predetermined information with second location information indicating a current location of the second terminal device to the server 130.
In one embodiment, the second predetermined signal may include a character string arranged in accordance with a predetermined rule. In another embodiment, the second predetermined signal may include a voltage input received by a predetermined port of the second terminal device.
There may be many ways of inputting the second predetermined signal to the second transceiver module 15. For example: inputting the second predetermined signal through a keyboard; inputting the second predetermined signal through a virtual key of a touch screen; detecting whether the motion direction of the second terminal device 120 suddenly changes through the arrangement of a motion detection device, such as inputting the second predetermined signal when a user shakes the second terminal device 120.
In some embodiments, receiving the input second predetermined signal by the second terminal device 120 may indicate that the status information of another authenticated terminal device needs to be obtained by the second terminal device so that authentication of the second terminal device 120 can be achieved according to the status information.
The second location information may indicate the current location of the second terminal device 120. The second location information can be generated by satellite positioning. For example, the second terminal device 120 may be provided with a GPS module. The second location information can also be generated by base station positioning. For example, the second terminal device 120 may be provided with a GSM chip or CDMA chip, etc. The second location information can also be generated by network IP positioning.
There may be many ways of arranging the second predetermined information and the second location information. For example, the second location information may be used as part or all of the second predetermined information content. In another example, a predetermined character string may be used as the second predetermined information content, and the second location information may be used as an attachment to the second predetermined information.
The status information receiving module 17 may be used for receiving the status information.
In some embodiments, after the status information receiving module 17 receives the status information, authentication of the second terminal device 120 and other tasks can be completed based on the received status information, without requiring a user to re-enter the account and password information to the second terminal device, thereby improving convenience to the user. The status information may include a Session ID assigned by server 130 to the first terminal device. The Session ID may be added to all subsequent communications with server 130 after the second terminal device 120 receives the Session ID. The first terminal device 110, the second terminal device 120, and the server 130 can be in the same session. Furthermore, the status information may include account and/or password information, so the second terminal device 120 can further access data corresponding to the access level of the corresponding account. Moreover, a corresponding relationship may exist between the Session ID and the account, and the second terminal device 120 may also access data corresponding to the access level of account based on the Session ID.
The server 130 may comprise an information receiving module 19 and an information transmitting module 21.
The information receiving module 19 may be used for receiving the first and second predetermined information.
In some embodiments, the information receiving module 19 may include essential data communication hardware and/or essential software drivers for the hardware.
The information transmitting module 21 may be used for transmitting the status information to the second terminal device 120 when the first and second location information indicates the same location.
In some embodiments, the server 130 may compare the locations indicated by the first and second location information. The server 130 may communicate with a plurality of terminal devices, all of which can transmit location information to the server 130, but do not necessarily have to synchronize the login information to the same account. Therefore, the server 130 may determine whether the terminal devices are in the same location based on the received location information.
In some embodiments, when determining that the first and second location information indicate substantially the same location, the server 130 may confirm that the first terminal device 110 and the second terminal device 120 are co-located and both transmit the predetermined information, indicating that the status information of the first terminal device 110 is to be transmitted to the second terminal device 120 for authenticating the second terminal device 120. The server 130 may then transmit the status information received from the first terminal device to the second terminal device 120.
FIG. 5 shows an exemplary terminal device interaction method implemented by first terminal device 110, which may comprise the following steps.
Step S29: status information indicating that a terminal device is authenticated is received.
In one example, when visiting websites, or running software or applications, the terminal device can be authenticated based on account and password information. After authentication, the server may receive the account and password information and may transmit the status information indicating that the terminal device is authenticated to the terminal device.
In some embodiments, the status information may be used for indicating that the terminal device is authenticated. For example, the status information may comprise a character string formed in accordance with a predetermined rule. The status information may also comprise account and/or password information. Specifically, for example, the status information can be a session identifier, e.g., Session ID, established between the server and the terminal device.
Step S31: the terminal device may receive a first predetermined signal, the terminal device may then transmit first predetermined information with the status information and first location information indicating a current location of the terminal device to a server.
In one embodiment, the first predetermined signal may include a character string arranged in accordance with a predetermined rule. In another embodiment, the first predetermined signal may include a voltage input received by a predetermined port of the terminal device.
There may be many ways of inputting the first predetermined signal to the terminal device. For example: inputting the first predetermined signal to the terminal device through a keyboard; inputting the first predetermined signal to the terminal device through a virtual key of a touch screen; detecting whether a direction of motion of the terminal device suddenly changes through an arrangement of a motion detection device, such as inputting the first predetermined signal if a user shakes the terminal device.
In some embodiments, if the terminal device receives the input first predetermined signal, which may indicate a situation in which the terminal device's authentication is potentially to be synchronized to another terminal device, the terminal device may transmit the first predetermined information to the server, so that the status information of the terminal device may be synchronized to another terminal device through the server.
The first location information may indicate the current location of the terminal device. The first location information can be generated by satellite positioning. For example, the terminal device may be provided with a GPS module. The first location information can also be generated by base station positioning. For example, the terminal device may be provided with a GSM chip or CDMA chip, etc. The first location information can also be generated by network IP positioning.
There may be many ways of arranging the first predetermined information, the status information, and the first location information. For example: the status information and the first location information may be used as part of the content of the first predetermined information. The status information may be separated from the first location information by a separator. In another example, one of the status information and the first location information may be used as part of the content of the first predetermined information. The other may be used as an attachment to the first predetermined information. In yet another example, a predetermined character string may be used as the content of the first predetermined information. Both the status information and the first location information may be used as attachment to the first predetermined information.
In one embodiment of the application, receiving the first predetermined signal may comprise: generating the first predetermined signal when detecting a sudden change in the direction of motion.
In some embodiments, the terminal device may comprise a motion detection device for generating a first predetermined signal when the direction of motion of the terminal device suddenly changes, thereby inputting the first predetermined signal to the terminal device. For example, the motion detection device may be a gyroscope.
In one embodiment of the application, receiving the first predetermined signal may comprise: generating the first predetermined signal by pressing a predetermined key.
In some embodiments, the terminal device may comprise a keyboard or a virtual keyboard with touch screen technologies. The first predetermined signal may be an electric signal generated by pressing the predetermined key, for example, the space key, of the keyboard or virtual keyboard.
FIG. 6 shows another exemplary terminal device interaction method, which may comprise the followings steps.
Step S33: an identification code transmitted by the server may be received, and the identification code can uniquely identify one terminal device.
In some embodiments, the server may communicate with a plurality of terminal devices, one of which has been authenticated, and the user may wish to authenticate another one of the plurality of terminal devices by transmitting the status information of the authenticated terminal device to the other terminal device. Moreover, the terminal devices may all transmit the predetermined information to the server. So the server may need to distinguish at which terminal device in particular the user wishes to obtain the status information. To prevent the server from transmitting the status information to the terminal device that should not receive the status information, the server may assign an identification code to each of the plurality of terminal device, so the terminal devices can be distinguished by the identification codes.
Step S35: the identification codes may be displayed.
In some embodiments, the terminal devices may display the identification codes, so that the user can distinguish among different terminal devices according to the identification codes displayed by the terminal devices. When there is a plurality of terminal devices, the authenticated terminal device can display an identification code list, and each unauthenticated terminal device displays the corresponding identification code, so the user can see the identification code displayed on a certain terminal device, and correspondingly look up the same identification code from the list displayed by the authenticated terminal device.
Step S37: when a click event occurs to select an identification code or an entered identification code is received, the identification code may be transmitted to the server.
In some embodiments, the user may click on the displayed identification code on the authenticated terminal device or enter the identification code, so as to confirm the terminal device to obtain the status information based on the corresponding relationship between the identification code and the terminal device.
In some embodiments, the terminal device can monitor whether the click event occurs on the displayed identification code. For example, the terminal device may be provided with a touch screen, and the user can click on the position on the touch screen corresponding identification code, or click on the identification code using a mouse device. When the terminal device provides a keyboard, the user may enter the identification code.
In some embodiments, the terminal device may transmit the identification code to the server, so that the server can transmit the status information to the terminal device corresponding to the identification code.
FIG. 7 shows an exemplary implementation of terminal device 110, which may comprise a first status information receiving module 11 and a first transceiver module 13.
In some embodiments, the terminal device may include smart phones, smart bracelets, smart watches, smart glasses, tablet computers, laptops or desktop computers. The terminal device may also include other smart devices capable of running software.
The first status information receiving module 11 may be used for receiving status information indicating that the terminal device is authenticated.
In one example, when visiting websites, or running software or applications, the terminal device 110 can be authenticated based on account and password information. After authentication, the server may transmit the status information indicating that the terminal device 110 is authenticated to the terminal device 110. The first status information receiving module 11 may be used for receiving the status information.
In some embodiments, the status information may be used for indicating that the terminal device 110 is authenticated. For example, the status information may comprise a character string formed in accordance with a predetermined rule. The status information may also comprise account and/or password information. Specifically, for example, the status information can be a session identifier, e.g., Session ID, established between the server and the terminal device 110.
The first transceiver module 13 may receive a first predetermined signal, and the first transceiver module 13 may then be used for transmitting first predetermined information with the status information and first location information indicating a current location to the server.
In one embodiment, the first predetermined signal may include a character string arranged in accordance with a predetermined rule. In another embodiment, the first predetermined signal may include a voltage input received by a predetermined port of the terminal device 110.
There may be many ways of inputting the first predetermined signal to the first transceiver module 13. For example: inputting the first predetermined signal through a keyboard; inputting the first predetermined signal through a virtual key of a touch screen; detecting whether a direction of motion of the terminal device 110 suddenly changes through an arrangement of a motion detection device, such as inputting the first predetermined signal if a user shakes the terminal device 110.
In some embodiments, receiving the input first predetermined signal by the first transceiver module 13 may indicate that the status information of the first terminal device need to be transmitted to another terminal device, so that the authentication of the other terminal device can be completed according to the status information. The first transceiver module 13 may transmit the first predetermined information to the server, so that the server may transmit the status information of the first terminal device to another terminal device.
The first location information may indicate the current location of the terminal device 110. The first location information can be generated by satellite positioning. For example, the terminal device 110 may be provided with a GPS module. The first location information can also be generated by base station positioning. For example, the terminal device 110 may be provided with a GSM chip or CDMA chip, etc. The first location information can also be generated by network IP positioning.
There may be many ways of arranging the first predetermined information, the status information, and the first location information. For example: the status information and the first location information may be used as part of the content of the first predetermined information. The status information may be separated from the first location information by a separator. In another example, one of the status information and the first location information may be used as part of the content of the first predetermined information. The other may be used as an attachment to the first predetermined information. In yet another example, a predetermined character string may be used as the content of the first predetermined information. Both the status information and the first location information may be used as attachment to the first predetermined information.
FIG. 8 shows an exemplary terminal device interaction method implemented by second terminal device 120, which may comprise the following steps.
Step S39: when a second predetermined signal is received, second predetermined information with second location information indicating a current location may be transmitted to a server.
In one embodiment, the second predetermined signal may include a character string arranged in accordance with a predetermined rule. In another embodiment, the second predetermined signal may include a voltage input received by a predetermined port of a terminal device.
There may be many ways of inputting the second predetermined signal to the terminal device. For example: inputting the second predetermined signal to the terminal device through a keyboard; inputting the second predetermined signal to the terminal device through a virtual key of a touch screen; detecting whether a direction of motion of the terminal device suddenly changes through an arrangement of a motion detection device, such as inputting the second predetermined signal to the terminal device if a user shakes the terminal device.
In some embodiments, receiving the input second predetermined signal by the second terminal device may indicate that the status information of another authenticated terminal device needs to be obtained by the second terminal device so that authentication of the second terminal device can be completed according to the status information.
The second location information may indicate the current location of the terminal device. The second location information can be generated by satellite positioning. For example, the terminal device may be provided with a GPS module. The second location information can also be generated by base station positioning. For example, the terminal device may be provided with a GSM chip or CDMA chip, etc. The second location information can also by generated by network IP positioning.
There may be many ways of arranging the second predetermined information and the second location information. For example, the second location information may be used as part or all of the second predetermined information content. In another example, a predetermined character string may be used as the second predetermined information content, and the second location information may be used as an attachment to the second predetermined information.
Step S41: the status information indicating that the terminal device is authenticated may be received.
In some embodiments, the status information may be used for indicating the status that a terminal device is authenticated. For example, the status information can comprise a character string formed in accordance with a predetermined rule. The status information may also comprise account and/or password information. Specifically, for example, the status information can be a session identifier, e.g., Session ID, established between the server and the terminal device.
In some embodiments, after the terminal device receives the status information, the authentication can be completed based on the received status information, without requiring a user to re-enter the account and password information to the terminal device, thereby improving convenience to the user. The status information may include the Session ID assigned by the server to the authenticated terminal device. The Session ID may be added to all subsequent communications with the server after the current terminal device receives the Session ID. The terminal device transmitting the status information, the current terminal device, and the server may be in the same session. Furthermore, the status information may include account and/or password information, so the terminal device can further access data corresponding to the access level of corresponding account. Moreover, a corresponding relationship may exist between the Session ID and the account, and the terminal device may also access data corresponding to the access level of the account based on the Session ID.
In one embodiment of the application, receiving the second predetermined signal may comprise: generating the second predetermined signal when detecting a sudden change in the direction of motion.
In some embodiments, the terminal device may comprise a motion detection device for generating a second predetermined signal when the direction of motion of the terminal device suddenly changes, thereby inputting the second predetermined signal to the terminal device. For example, the motion detection device may be a gyroscope.
In one embodiment of the application, receiving the input second predetermined signal may comprise: generating the second predetermined signal by clicking a predetermined key.
In some embodiments, the terminal device may comprise a keyboard or a virtual keyboard with touch screen technologies. The second predetermined signal may be an electric signal generated by pressing the predetermined key, for example, the space key, of the keyboard or virtual keyboard.
FIG. 9 shows another exemplary terminal device interaction method, which may comprise the following steps.
Step S43: an identification code transmitted by the server may be received, and the identification code can uniquely identify the second terminal device.
The server may communicate with a plurality of terminal devices in the same location, one of which is authenticated, and the user may wish to authenticate one of the plurality of terminal devices by transmitting the status information of the authenticated terminal device to the other terminal device. Moreover, the terminal devices may all transmit the predetermined information to the server. So the server may need to distinguish at which terminal device in particular the user wishes to obtain the status information. To prevent the server from transmitting the status information to terminal devices that should not receive the status information, the server may assign an identification code to each of the plurality of terminal device, so that the terminal devices can be distinguished by the identification codes.
Step S45: the identification codes may be displayed.
In some embodiments, the terminal device may display the identification code, so that the user can select, confirm, and/or designate the terminal device to obtain the status information according to the identification code displayed by the terminal device. When there is a plurality of terminal devices, the identification code corresponding to each of the plurality of terminal devices can be displayed.
FIG. 10 shows an exemplary implementation of terminal device 120, which may comprise a second transceiver module 15 and a status information receiving module 17.
In some embodiments, the terminal device 120 may include smart phones, smart bracelets, smart watches, smart glasses, tablet computers, laptops or desktop computers. The terminal device may also include other smart devices capable of running software.
The second transceiver module 15 may be used for transmitting second predetermined information to the server when receiving a second predetermined signal with second location information indicating a current location.
In one embodiment, the second predetermined signal may include a character string arranged in accordance with a predetermined rule. In another embodiment, the second predetermined signal may include a voltage input received by a predetermined port of the terminal device.
There may be many ways of inputting the second predetermined signal to the second transceiver module 15. For example: inputting the second predetermined signal through a keyboard; inputting the second predetermined signal through a virtual key of a touch screen; detecting whether a direction of motion of the terminal device 120 suddenly changes through an arrangement of a motion detection device, such as inputting the second predetermined signal if the user shakes the terminal device.
In some embodiments, receiving the input second predetermined signal by the second terminal device 120 may indicate that the status information of another authenticated terminal device needs to be obtained by the second terminal device so that authentication of the second terminal device 120 can be completed according to the status information.
The second location information may indicate the current location of the terminal device 120. The second location information can be generated by satellite positioning. For example, the terminal device 120 may be provided with a GPS module. The second location information can also be generated by base station positioning. For example, the terminal device 120 may be provided with a GSM chip or CDMA chip, etc. The second location information can also be generated by network IP positioning.
There may be many ways of arranging the second predetermined information and the second location information. For example, the second location information may be used as part or all of the second predetermined information content. In another example, a predetermined character string may be used as the second predetermined information content, and the second location information may be used as an attachment to the second predetermined information.
The status information receiving module 17 may be used for receiving the status information.
In some embodiments, the status information may be used for indicating the status that a terminal device is authenticated. For example, the status information may comprise a character string formed in accordance with a predetermined rule. The status information may also comprise account and/or password information. Specifically, for example, the status information can be a session identifier, e.g., Session ID, established between the server and the terminal device.
In some embodiments, after the status information receiving module 17 receives the status information, authentication of the terminal device 120 can be completed based on the received status information, without requiring a user to re-enter the account and password information, thereby improving convenience to the user. The status information may include the Session ID assigned by the server to the authenticated terminal device. The Session ID may be added to all the subsequent communications with the server after the current terminal device 120 receives the Session ID. The terminal device transmitting the status information, the current terminal device 120, and the server can be in the same session. Furthermore, the status information may include account and/or password information, so the terminal device 120 can further access data corresponding to the access level of the account. Moreover, a corresponding relationship may exist between the Session ID and the account, and the second terminal device 120 may also access data corresponding to the access level of the account based on the Session ID.
FIG. 11 shows another exemplary terminal device interaction method, which may comprise the following steps.
Step S47: first predetermined information with status information indicating that a first terminal device is authenticated and first location information indicating a current location of the first terminal device may be received; second predetermined information with second location information indicating a current location of a second terminal device may be received.
In some embodiments, the status information may be used for indicating that the first terminal device is authenticated. For example, the status information may comprise a character string formed in accordance with a predetermined rule. The status information may also comprise account and/or password information. Specifically, for example, the status information can be a session identifier, e.g., Session ID, established between the server and the first terminal device.
In some embodiments, receiving the first predetermined information by the server may indicate that the status information of the first terminal device needs to be obtained by the second terminal device, so that authentication of the second terminal device is completed according to the status information. There may be many ways of arranging the status information and the first location information. For example, the status information and the first location information may be used as part of content of the first predetermined information. The status information may be separated from the first location information by a separator. In another example, one of the status information and the first location information may be used as part of the content of the first predetermined information. The other may be used as an attachment to the first predetermined information. In yet another example, both the status information and the first location information may be used as attachments to the first predetermined information. In yet another example, a predetermined character string may be used as the content of the first predetermined information.
The first location information may indicate the location of the first terminal device. The first location information can be generated by satellite positioning. For example, the first terminal device may be provided with a GPS module. The first location information can also be generated by base station positioning. For example, the first terminal device may be provided with a GSM chip or CDMA chip, etc. The first location information can also be generated by network IP positioning.
In some embodiments, receiving the second predetermined information by the server may indicate that the status information of the first terminal device needs to be obtained by the second terminal device. There may be many ways of arranging the second predetermined information and the second location information. For example, the second location information may be used as the content of the second predetermined information. In another example, the second location information may be used as an attachment to the second predetermined information. In yet another example, a predetermined character string may be used as the content of the second predetermined information.
The second location information may indicate the current location of the second terminal device. The second location information can be generated by satellite positioning. For example, the second terminal device may be provided with a GPS module. The second location information can also be generated by base station positioning. For example, the second terminal device may be provided with a GSM chip or CDMA chip, etc. The second location information can also by generated by network IP positioning.
Step S49: when the first location information and the second location information indicate the same location, the status information may be transmitted to the second terminal device.
In some embodiments, the server may compare the locations indicated by the first and second location information. The server may communicate with a plurality of terminal devices, all of which can transmit location information to the server, but do not necessarily have to obtain the status information of the same terminal device. Therefore, the server may determine whether the terminal devices are in the same location according to the received location information.
In some embodiments, if it is determined that the first and second location information indicate substantially the same location, the server may confirm that the first and second terminal devices are co-located and both transmit predetermined information, indicating that the status information of the first terminal device is to be transmitted to the second terminal device for authenticating the second terminal device. The server may then transmit the status information received from the first terminal device to the second terminal device.
In one embodiment of the application, the first predetermined information may be provided with a first time stamp. The second predetermined information may be provided with a second time stamp. In the step S49, when the first and second location information indicates the same location and the difference between the first and second time stamps is within a predetermined range, the server may transmit the status information to the second terminal device.
In one example, the first time stamp of the first predetermined information may be the time for the first terminal device to start transmitting the first predetermined information. In another example, the first time stamp of the first predetermined information may be the time when the first terminal device finishes transmitting the first predetermined information. In yet another example, the first time stamp of the first predetermined information may be the time for the server to start receiving the first predetermined information. In yet another example, the first time stamp of the first predetermined information may be the time when the server finishes receiving the first predetermined information.
In one example, the second time stamp of the second predetermined information may be the time for the second terminal device to start transmitting the second predetermined information. In another example, the second time stamp of the second predetermined information may be the time when the second terminal device finishes transmitting the second predetermined information. In yet another example, the second time stamp of the second predetermined information may be the time for the server to start receiving the second predetermined information. In yet another example, the second time stamp of the second predetermined information may be the completion time when the server finishes receiving the second predetermined information.
In some embodiments, the server may identify the second terminal device that needs to obtain the status information based on whether the first and second location information are in the same location and whether the difference between the first and second time stamps is within a predetermined range. In some cases, there may be a plurality of second terminal devices. The second terminal devices and the first terminal device may be in the same location. The server may more accurately identify the second terminal device that needs to obtain the status information based on whether the difference between the time of receiving the first predetermined information and the time of receiving the second predetermined information is within a predetermined range.
In some embodiments, the predetermined range may be set in the server in advance. For example, the predetermined range may be 0 to 50 micro-seconds.
FIG. 12 shows an exemplary implementation of step S49 of transmitting the status information to the second terminal device, which may comprise the following steps.
Step S51: an identification code may be assigned to the second terminal device, and the identification code can uniquely identify one second terminal device.
In some embodiments, the server may communicate with a plurality of second terminal devices, the plurality of second terminal devices and the first terminal device may be in the same location, and the user may wish to authenticate one of the plurality of second terminal devices by transmitting the status information of the first terminal device to that second terminal device. Moreover, the second terminal devices may all transmit the predetermined information to the server. So the server may need to distinguish at which second terminal device in particular the user wishes to obtain the status information. To prevent the server from transmitting the status information to the second terminal device that should not receive the status information, the server may assign an identification code to each of the plurality of second terminal devices, so the second terminal devices can be distinguished by the identification codes.
In some embodiments, the identification codes may be generated by the server based on a predetermined algorithm. For example, the predetermined algorithm may include a random function or a hash algorithm.
Step S53: the identification codes may be transmitted to the identified second terminal devices.
In some embodiments, the second terminal device may display the identification code, so that the user can select, confirm, and/or designate the terminal device to obtain the status information according to the identification code displayed by the terminal device.
Step 55: the identification codes may be transmitted to the first terminal device.
In some embodiments, the first terminal device may display the identification code, so that the user can distinguish between different second terminal devices according to the identification code displayed by the first and/or the second terminal devices. When there is a plurality of second terminal devices, the first terminal device can display an identification code list, and each second terminal device displays the corresponding identification code, so the user can see the identification code displayed on a certain second terminal device, and correspondingly look up the same identification code from the list displayed by the first terminal device. The user can select, confirm, and/or designate the second terminal device to obtain the status information by clicking from the identification code list displayed by the first terminal device. The first terminal device can monitor whether the click event occurs on the displayed identification code. For example, the first terminal device may be provided with a touch screen, and the user can click on a position on the touch screen corresponding to the identification code, or click on the identification code using a mouse device.
Step S57: the identification codes transmitted by the first terminal device and/or the second terminal device may be received.
In some embodiments, after the corresponding identification code is displayed by the second terminal device, the user can enter the corresponding identification code of the second terminal device needing to obtain the status information to the first terminal device, so the first terminal device can feed the identification code back to the server so that the sever confirms the second terminal device needing to receive the status information. The user can also enter the corresponding identification code of the second terminal device needing to obtain the status information to the second terminal device, and the second terminal device transmits the identification code to the server, so that the server confirms the second terminal device that needs to receive the status information. Moreover, the user can also enter the corresponding identification code of the second terminal device that needs to obtain the status information to the first and second terminal device, and the first and second terminal device respectively feed the identification code back to the server.
Step S59: the status information may be transmitted to the second terminal device identified by the received identification code.
In some embodiments, the first terminal device may receive the identification code transmitted by the server, the first terminal may then transmit one of the received identification codes to the server according to an operation of the user. Accordingly, the second terminal device that needs to obtain the status information may be specified.
In some embodiments, there may be a plurality of second terminal devices. The second terminal devices may display the identification codes after receiving the identification codes. The user may input the identification code to the first terminal device, and thereby confirming the terminal device that needs to receive the status information based on the identification code. When the user selects one of the plurality of second terminal devices to receive the status information, the identification code displayed by the second terminal device may be transmitted to the first terminal device. The first terminal device may then transmit the identification code to the server. After the server receives the identification code, the server may transmit the status information to the second terminal device corresponding to the identification code based on the corresponding relationship between the identification code and the second terminal device.
FIG. 13 shows an exemplary implementation of server 130, which may comprise an information receiving module 19 and an information transmitting module 21.
The information receiving module 19 may be used for receiving first predetermined information with status information indicating that the first terminal device completes login and first location information indicating a current location of the first terminal device, and receiving second predetermined information with second location information indicating a current location of the second terminal device.
In some embodiments, the status information may be used for indicating the status that the first terminal device is authenticated. For example, the status information may comprise a character string formed in accordance with a predetermined rule. The status information may also comprise account and/or password information. Specifically, for example, the status information can be a session identifier, e.g., Session ID, established between the server and the first terminal device.
In some embodiments, receiving the first predetermined information by the information receiving module 19 may indicate that the status information of the first terminal device needs to be obtained by the second terminal device, so that the authentication of the second terminal device can be completed according to the status information. There are many ways of arranging the status information and the first location information. For example: the status information and the first location information may be used as the content of the first predetermined information. The status information may be separated from the first location information. In another example, one of the status information and the first location information may be used as the content of the first predetermined information. The other may be used as an attachment to the first predetermined information. In yet another example, a predetermined character string may be used as the content of the first predetermined information. In yet another example, both the status information and the first location information may be used as attachments to the first predetermined information.
The first location information may indicate the current location of the first terminal device. The first location information can be generated by satellite positioning. For example, the first terminal device may be provided with a GPS module. The first location information can also be generated by base station positioning. For example, the first terminal device may be provided with a GSM chip or CDMA chip, etc. The first location information may also by generated by network IP positioning.
In some embodiments, receiving the second predetermined information by the information receiving module 19 may indicate that the status information of the first terminal device needs to be obtained by the second terminal device. There are many ways of arranging the second predetermined information and the second location information. For example: the second location information may be used as the content of the second predetermined information. In another example, the second location information may be used as an attachment of the second predetermined information. In yet another example, a predetermined character string may be used as the content of the second predetermined information.
The second location information may indicate the location of the second terminal device. The second location information may be generated by satellite positioning. For example, the second terminal device may be provided with a GPS module. The second location information can also be generated by base station positioning. For example, the second terminal device may be provided with a GSM chip or CDMA chip, etc. The second location information may also by generated by network IP positioning.
The information transmitting module 21 may be used for transmitting the status information to the second terminal device when the first location information and the second location information indicate the same location.
In some embodiments, the server 130 may compare the locations indicated by the first and second location information. The server 130 may communicate with a plurality of terminal devices, all of which can transmit location information to the server 130, but do not necessarily have to synchronize the login information to the same account. Therefore, the server 130 may determine whether the terminal devices are in the same location based on the received location information.
In some embodiments, if it is determined that the first location information and the second location information indicate substantially the same location, the server 130 may confirm that the first terminal device and the second terminal device are co-located and both transmit the predetermined information, indicating that the status information of the first terminal device is to be transmitted to the second terminal device for authenticating the second terminal device. The information transmitting module 21 may then transmit the status information received from the first terminal device to the second terminal device at this time.
From the technical scheme provided by the embodiment of the application, it can be seen that after a terminal device is authenticated, this terminal device and another terminal device that needs to be authenticated transmit predetermined information to a server. The server transmits the status information of the authenticated terminal device to the terminal device that needs to be authenticated, so that the authentication can be completed based on the status information, and the user can avoid re-entering account and password information and enjoy the convenience.
The specification has described systems and methods for interaction among terminal devices and servers. The illustrated steps are set out to explain the exemplary embodiments shown, and it should be anticipated that ongoing technological development will change the manner in which particular functions are performed. Thus, these examples are presented herein for purposes of illustration, and not limitation. For example, steps or processes disclosed herein are not limited to being performed in the order described, but may be performed in any order, and some steps may be omitted, consistent with disclosed embodiments. Further, the boundaries of the functional building blocks have been arbitrarily defined herein for the convenience of the description. Alternative boundaries can be defined so long as the specified functions and relationships thereof are appropriately performed. Alternatives (including equivalents, extensions, variations, deviations, etc., of those described herein) will be apparent to persons skilled in the relevant art(s) based on the teachings contained herein. Such alternatives fall within the scope and spirit of the disclosed embodiments.
While examples and features of disclosed principles are described herein, modifications, adaptations, and other implementations are possible without departing from the spirit and scope of the disclosed embodiments. Also, the words “comprising,” “having,” “containing,” and “including,” and other similar forms are intended to be equivalent in meaning and be open ended in that an item or items following any one of these words is not meant to be an exhaustive listing of such item or items, or meant to be limited to only the listed item or items. It must also be noted that as used herein and in the appended claims, the singular forms “a,” “an,” and “the” include plural references unless the context clearly dictates otherwise.
Furthermore, one or more computer-readable storage media may be utilized in implementing embodiments consistent with the present disclosure. A computer-readable storage medium refers to any type of physical memory on which information or data readable by a processor may be stored. Thus, a computer-readable storage medium may store instructions for execution by one or more processors, including instructions for causing the processor(s) to perform steps or stages consistent with the embodiments described herein. The term “computer-readable medium” should be understood to include tangible items and exclude carrier waves and transient signals, i.e., be non-transitory. Examples include RAM, ROM, volatile memory, nonvolatile memory, hard drives, CD ROMs, DVDs, flash drives, disks, and any other known physical storage media.
It will be appreciated that the present invention is not limited to the exact construction that has been described above and illustrated in the accompanying drawings, and that various modifications and changes can be made without departing from the scope thereof. It is intended that the scope of the invention should only be limited by the appended claims.

Claims (12)

What is claimed is:
1. A method, implemented by a processor device of a server, for providing authentication, the method comprising:
receiving, from a first terminal device, status information, wherein:
the status information indicates that the first terminal device is authenticated, and
the status information is received in response to the first terminal device receiving a first predetermined signal, wherein the first predetermined signal includes a voltage input received by a predetermined port of the first terminal device to indicate synchronizing authentication status of the first terminal device to a second terminal device through the server;
generating an identification code indicating an identity of the second terminal device;
transmitting the identification code to at least one of the first or second terminal device;
determining whether the first and second terminal devices are co-located; and
in response to a determination that the first and second terminal devices are co-located, transmitting the status information to the second terminal device to authenticate the second terminal device according to the identification code.
2. The method of claim 1, comprising:
receiving, from at least one of the first or second terminal device, the identification code; and
transmitting the status information to the second terminal device indicated by the received identification code.
3. The method of claim 1, comprising:
receiving a first time stamp from the first terminal device;
receiving a second time stamp from the second terminal device;
comparing the first and second time stamps to determine a difference between the first and second time stamps; and
transmitting the status information to the second terminal device when the difference between the first and second time stamps is within a predetermined range.
4. The method of claim 1, further comprising:
receiving, from the first terminal device, first location information, wherein:
the first location information indicates a current location of the first terminal device, and
the first location is received in response to the first terminal device receiving the first predetermined signal; and
receiving, from the second terminal device, second location information indicating a current location of the second terminal device;
wherein determining whether the first and second terminal devices are co-located comprises: comparing the first and second location information to determine whether the first and second terminal devices are co-located.
5. A server, comprising:
a transceiver device configured to transmit or receive information from first and second terminal devices; and
a processor device configured to:
receive, from a first terminal device, status information, wherein:
the status information indicates that the first terminal device is authenticated, and
the status information is received in response to the first terminal device receiving a first predetermined signal, wherein the first predetermined signal includes a voltage input received by a predetermined port of the first terminal device to indicate synchronizing authentication status of the first terminal device to a second terminal device through the server;
generate an identification code indicating an identity of the second terminal device;
transmit, by controlling the transceiver device, the identification code to at least one of the first or second terminal device;
determine whether the first and second terminal devices are co-located; and
in response to a determination that the first and second terminal devices are co-located, control the transceiver to transmit the status information to the second terminal device to authenticate the second terminal device according to the identification code.
6. The server of claim 5, wherein the processor device is further configured to:
control the transceiver to receive, from at least one of the first or second terminal device, the identification code; and
control the transceiver to transmit the status information to the second terminal device indicated by the received identification code.
7. The server of claim 5, wherein the processor device is further configured to:
control the transceiver to receive a first time stamp from the first terminal device;
control the transceiver to receive a second time stamp from the second terminal device;
compare the first and second time stamps to determine a difference between the first and second time stamps; and
control the transceiver to transmit the status information to the second terminal device when the difference between the first and second time stamps is within a predetermined range.
8. The server of claim 5, wherein the processor is further configured to:
receive, from the first terminal device, first location information, wherein:
the first location information indicates a current location of the first terminal device, and
the first location is received in response to the first terminal device receiving the first predetermined signal; and
receive, from the second terminal device, second location information indicating a current location of the second terminal device;
wherein the processor is configured to compare the first and second location information to determine whether the first and second terminal devices are co-located.
9. A non-transitory computer readable medium that stores a set of instructions that is executable by at least one processor of a server to cause the server to perform a method for providing authentication, the method comprising:
receiving, from a first terminal device, status information, wherein:
the status information indicates that the first terminal device is authenticated, and
the status information is received in response to the first terminal device receiving a first predetermined signal, wherein the first predetermined signal includes a voltage input received by a predetermined port of the first terminal device to indicate synchronizing authentication status of the first terminal device to a second terminal device through the server;
generating an identification code indicating an identity of the second terminal device;
transmitting the identification code to at least one of the first or second terminal device;
determining whether the first and second terminal devices are co-located; and
in response to a determination that the first and second terminal devices are co-located, transmitting the status information to the second terminal device to authenticate the second terminal device according to the identification code.
10. The non-transitory computer readable medium of claim 9, wherein the set of instructions is executable by the at least one processor of the server to cause the first terminal device to further perform:
receiving, from at least one of the first or second terminal device, the identification code; and
transmitting the status information to the second terminal device indicated by the received identification code.
11. The non-transitory computer readable medium of claim 9, wherein the set of instructions is executable by the at least one processor of the server to cause the first terminal device to further perform:
receiving a first time stamp from the first terminal device;
receiving a second time stamp from the second terminal device;
comparing the first and second time stamps to determine a difference between the first and second time stamps; and
transmitting the status information to the second terminal device when the difference between the first and second time stamps is within a predetermined range.
12. The non-transitory computer readable medium of claim 9, wherein the at least one processor configured to execute the set of instructions to cause the server to further perform:
receiving, from the first terminal device, first location information, wherein:
the first location information indicates a current location of the first terminal device, and
the first location is received in response to the first terminal device receiving the first predetermined signal; and
receiving, from the second terminal device, second location information indicating a current location of the second terminal device;
wherein determining whether the first and second terminal devices are co-located comprises: comparing the first and second location information to determine whether the first and second terminal devices are co-located.
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Citations (71)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6574627B1 (en) * 1999-02-24 2003-06-03 Francesco Bergadano Method and apparatus for the verification of server access logs and statistics
US20060036858A1 (en) * 2003-04-21 2006-02-16 Sony Corporation Terminal device authentication system
US20060212709A1 (en) * 2005-02-09 2006-09-21 Atsuhiro Kinoshita Authenticated device and individual authentication system
WO2006105380A1 (en) 2005-03-31 2006-10-05 Trimble Navigation Limited A portable motion-activated position reporting device
US20070094490A1 (en) * 2005-10-26 2007-04-26 Sony Ericsson Mobile Communications Ab Method and apparatus for multimedia session transfer
US20070145945A1 (en) * 2005-12-28 2007-06-28 Mcginley James W Method and apparatus to authenticate battery charging device
US7308251B2 (en) 2004-11-19 2007-12-11 Broadcom Corporation Location-based authentication of wireless terminal
CN101330384A (en) 2007-06-19 2008-12-24 中兴通讯股份有限公司 Authentication method for terminal equipment
US20080318548A1 (en) * 2007-06-19 2008-12-25 Jose Bravo Method of and system for strong authentication and defense against man-in-the-middle attacks
US20090037734A1 (en) 2006-02-28 2009-02-05 Matsushita Electric Industrial Co., Ltd. Device authentication system, mobile terminal device, information device, device authenticating server, and device authenticating method
EP2058748A1 (en) 2006-08-31 2009-05-13 Fujitsu Limited Network connected terminal device authenticating method, network connected terminal device authenticating program and network connected terminal device authenticating apparatus
US7581243B2 (en) 2004-01-30 2009-08-25 Canon Kabushiki Kaisha Secure communication method, terminal device, authentication server, computer program, and computer-readable recording medium
US20100223663A1 (en) 2006-04-21 2010-09-02 Mitsubishi Electric Corporation Authenticating server device, terminal device, authenticating system and authenticating method
US20100317323A1 (en) * 2009-06-16 2010-12-16 International Business Machines Corporation System, method, and apparatus for proximity-based authentication for managing personal data
US7881295B2 (en) * 2006-03-24 2011-02-01 Scenera Technologies, Llc Establishing directed communication based upon physical interaction between two devices
US20110028094A1 (en) * 2009-07-31 2011-02-03 Kabushiki Kaisha Toshiba Information processing device and device registration method
US20110082767A1 (en) 2009-10-07 2011-04-07 Danal Co., Ltd. Multi-Step Authentication-Based Electronic Payment Method Using Mobile Terminal
US7930536B2 (en) 2003-05-12 2011-04-19 Sony Corporation Device-to-device authentication system, device-to-device authentication method, communication apparatus, and computer program
US20110131104A1 (en) 2009-06-02 2011-06-02 Qualcomm Incorporated Mobile Commerce Authentication And Authorization Systems
US7975293B2 (en) 2007-05-16 2011-07-05 Konica Minolta Holdings, Inc. Authentication system, authentication method and terminal device
US20110194624A1 (en) * 2010-02-08 2011-08-11 Eran Yakar Pairing plc devices
US20120144007A1 (en) * 2008-11-07 2012-06-07 Mimos Berhad Method for session transfer mechanism between communication devices
US8220034B2 (en) 2007-12-17 2012-07-10 International Business Machines Corporation User authentication based on authentication credentials and location information
US20120191614A1 (en) * 2011-01-20 2012-07-26 Sirf Technology Inc. System for location based transaction security
US20120198353A1 (en) * 2011-01-28 2012-08-02 Microsoft Corporation Transferring data using a physical gesture
US8295368B1 (en) * 2009-03-31 2012-10-23 Koamtac, Inc. Method and apparatus for improved interfacing of connections between a multiplicity of handheld devices
US20120331527A1 (en) * 2011-06-22 2012-12-27 TerraWi, Inc. Multi-layer, geolocation-based network resource access and permissions
US20120328101A1 (en) * 2011-06-27 2012-12-27 General Electric Company Method and system of location-aware certificate based authentication
US20130023339A1 (en) * 2011-07-20 2013-01-24 Igt Methods and apparatus for providing secure logon to a gaming machine using a mobile device
US20130212287A1 (en) * 2010-12-03 2013-08-15 Siemens Enterprise Communications, Inc. Method and Apparatus for Controlling Sessions From One or More Devices
US20130326607A1 (en) * 2012-06-05 2013-12-05 Alibaba Group Holding Limited Method, Apparatus and System of Controlling Remote Login
US8625796B1 (en) * 2012-11-30 2014-01-07 Mourad Ben Ayed Method for facilitating authentication using proximity
US8646060B1 (en) * 2013-07-30 2014-02-04 Mourad Ben Ayed Method for adaptive authentication using a mobile device
US20140173695A1 (en) * 2012-12-18 2014-06-19 Google Inc. Token based account access
US20140181911A1 (en) * 2012-12-22 2014-06-26 John Scott Kula Method, system and program product for secure authentication
US20140179273A1 (en) * 2012-12-21 2014-06-26 Empire Technology Development Llc Location-based authentication scheme
WO2014104436A1 (en) 2012-12-27 2014-07-03 신한카드 주식회사 Method for mutual authentication for payment device
US20140196142A1 (en) * 2013-01-07 2014-07-10 Apple Inc. Device authentication using list of known good devices
US8800007B1 (en) * 2011-06-24 2014-08-05 Juniper Networks, Inc. VPN session migration across clients
US20140219515A1 (en) * 2011-06-29 2014-08-07 Amazon Technologies, Inc. User identification by gesture recognition
CN104052751A (en) 2014-06-25 2014-09-17 北京奇艺世纪科技有限公司 Method and device for establishing communication connection
US20140273957A1 (en) * 2013-03-15 2014-09-18 Xerox Corporation Method and apparatus for automatically pairing a mobile endpoint device to an output device using a card swipe authentication
US8855312B1 (en) * 2012-06-29 2014-10-07 Emc Corporation Mobile trust broker
CN104092657A (en) 2014-04-29 2014-10-08 腾讯科技(深圳)有限公司 Information transmission method, device and system
US20140302832A1 (en) * 2013-03-04 2014-10-09 Sony Corporation Phone connection method, electronic terminal and system
US20140351370A1 (en) * 2013-05-24 2014-11-27 International Business Machines Corporation Sharing web application sessions across multiple devices
US20140359735A1 (en) * 2013-05-29 2014-12-04 Sap Portals Israel Ltd Maintaining application session continuity across devices
US20140359709A1 (en) * 2013-06-04 2014-12-04 Google Inc. Maintaining Video Conference Session Continuity During Transfer of Session to Alternative Device
US8914861B2 (en) 2008-06-23 2014-12-16 Zte Corporation Authentication method and authentication system based on forking, and forking authentication device
CN104244227A (en) 2013-06-09 2014-12-24 中国移动通信集团公司 Terminal access authentication method and device in internet of things system
US20140379783A1 (en) * 2013-06-20 2014-12-25 Global Golf Tour, LLC Clustered device synchronization
US20150012936A1 (en) * 2007-10-12 2015-01-08 Broadcom Corporation Method and system for using location information acquired from gps for secure authentication
US20150020185A1 (en) * 2012-05-24 2015-01-15 Fmr Llc Communication Session Transfer Between Devices
US20150067803A1 (en) * 2013-08-27 2015-03-05 Maan ALDUAIJI Computer device, a method for controlling a login status of a computer device and a server
US20150067181A1 (en) * 2013-08-30 2015-03-05 Egain Communications Corporation Method and system for multi-domain co-browsing in a c2c co-browse architecture through co-browsing functionality provided in a browser extension on a host
US20150073987A1 (en) * 2012-04-17 2015-03-12 Zighra Inc. Fraud detection system, method, and device
US9014666B2 (en) * 2006-12-15 2015-04-21 Avaya Inc. Authentication based on geo-location history
US20150112868A1 (en) * 2011-10-03 2015-04-23 Ezetap Mobile Solutions Private Limited Dongle device with communication module for a secure electronic transaction
US9020121B1 (en) * 2012-07-16 2015-04-28 Google Inc. Method and apparatus for sharing data between devices
US20150121482A1 (en) * 2013-10-31 2015-04-30 Cellco Partnership D/B/A Verizon Wireless Mobile based login via wireless credential transfer
WO2015098172A1 (en) 2013-12-26 2015-07-02 株式会社Jvcケンウッド Authentication system, terminal device, authentication server, authentication method, and authentication program
US20150256973A1 (en) * 2014-03-07 2015-09-10 Aol Inc. Systems and methods for location-based authentication
US20150281235A1 (en) * 2014-03-31 2015-10-01 Cellco Partnership D/B/A Verizon Wireless Self-activation of user device
US20150334099A1 (en) * 2014-05-19 2015-11-19 Bank Of America Corporation Service Channel Authentication Token
US20150381740A1 (en) * 2014-06-27 2015-12-31 Paul J. Gwin System and method for automatic session data transfer between computing devices based on zone transition detection
WO2016006151A1 (en) 2014-07-11 2016-01-14 オリンパス株式会社 Image display device
US20160056651A1 (en) * 2014-08-20 2016-02-25 Qualcomm Incorporated Fast battery charging through digital feedback
US9277017B2 (en) * 2012-10-30 2016-03-01 Netiq Corporation Techniques for device independent session migration
US9350717B1 (en) * 2013-09-23 2016-05-24 Amazon Technologies, Inc. Location service for user authentication
US9451443B1 (en) * 2011-02-04 2016-09-20 CSC Holdings, LLC Providing a service with location-based authorization
US20160286566A1 (en) * 2013-11-15 2016-09-29 Sony Corporation Information processing device, information processing method and program

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US751243A (en) 1904-02-02 Sylvania
US308251A (en) 1884-11-18 Manufacture of spikes and machine therefor
US9014861B2 (en) 2011-12-20 2015-04-21 General Electric Company Method and system for noise-controlled operation of a wind turbine
CN105577624B (en) 2014-10-17 2019-09-10 阿里巴巴集团控股有限公司 Client exchange method and client and server

Patent Citations (73)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6574627B1 (en) * 1999-02-24 2003-06-03 Francesco Bergadano Method and apparatus for the verification of server access logs and statistics
US20060036858A1 (en) * 2003-04-21 2006-02-16 Sony Corporation Terminal device authentication system
US7930536B2 (en) 2003-05-12 2011-04-19 Sony Corporation Device-to-device authentication system, device-to-device authentication method, communication apparatus, and computer program
US7581243B2 (en) 2004-01-30 2009-08-25 Canon Kabushiki Kaisha Secure communication method, terminal device, authentication server, computer program, and computer-readable recording medium
US7308251B2 (en) 2004-11-19 2007-12-11 Broadcom Corporation Location-based authentication of wireless terminal
US20060212709A1 (en) * 2005-02-09 2006-09-21 Atsuhiro Kinoshita Authenticated device and individual authentication system
WO2006105380A1 (en) 2005-03-31 2006-10-05 Trimble Navigation Limited A portable motion-activated position reporting device
US20070094490A1 (en) * 2005-10-26 2007-04-26 Sony Ericsson Mobile Communications Ab Method and apparatus for multimedia session transfer
US20070145945A1 (en) * 2005-12-28 2007-06-28 Mcginley James W Method and apparatus to authenticate battery charging device
US20090037734A1 (en) 2006-02-28 2009-02-05 Matsushita Electric Industrial Co., Ltd. Device authentication system, mobile terminal device, information device, device authenticating server, and device authenticating method
US7881295B2 (en) * 2006-03-24 2011-02-01 Scenera Technologies, Llc Establishing directed communication based upon physical interaction between two devices
US20100223663A1 (en) 2006-04-21 2010-09-02 Mitsubishi Electric Corporation Authenticating server device, terminal device, authenticating system and authenticating method
EP2058748A1 (en) 2006-08-31 2009-05-13 Fujitsu Limited Network connected terminal device authenticating method, network connected terminal device authenticating program and network connected terminal device authenticating apparatus
US9014666B2 (en) * 2006-12-15 2015-04-21 Avaya Inc. Authentication based on geo-location history
US7975293B2 (en) 2007-05-16 2011-07-05 Konica Minolta Holdings, Inc. Authentication system, authentication method and terminal device
US20080318548A1 (en) * 2007-06-19 2008-12-25 Jose Bravo Method of and system for strong authentication and defense against man-in-the-middle attacks
CN101330384A (en) 2007-06-19 2008-12-24 中兴通讯股份有限公司 Authentication method for terminal equipment
US20150012936A1 (en) * 2007-10-12 2015-01-08 Broadcom Corporation Method and system for using location information acquired from gps for secure authentication
US8220034B2 (en) 2007-12-17 2012-07-10 International Business Machines Corporation User authentication based on authentication credentials and location information
US8914861B2 (en) 2008-06-23 2014-12-16 Zte Corporation Authentication method and authentication system based on forking, and forking authentication device
US20120144007A1 (en) * 2008-11-07 2012-06-07 Mimos Berhad Method for session transfer mechanism between communication devices
US8295368B1 (en) * 2009-03-31 2012-10-23 Koamtac, Inc. Method and apparatus for improved interfacing of connections between a multiplicity of handheld devices
US20110131104A1 (en) 2009-06-02 2011-06-02 Qualcomm Incorporated Mobile Commerce Authentication And Authorization Systems
US20100317323A1 (en) * 2009-06-16 2010-12-16 International Business Machines Corporation System, method, and apparatus for proximity-based authentication for managing personal data
US20110028094A1 (en) * 2009-07-31 2011-02-03 Kabushiki Kaisha Toshiba Information processing device and device registration method
US20110082767A1 (en) 2009-10-07 2011-04-07 Danal Co., Ltd. Multi-Step Authentication-Based Electronic Payment Method Using Mobile Terminal
US20110194624A1 (en) * 2010-02-08 2011-08-11 Eran Yakar Pairing plc devices
US20130212287A1 (en) * 2010-12-03 2013-08-15 Siemens Enterprise Communications, Inc. Method and Apparatus for Controlling Sessions From One or More Devices
US20120191614A1 (en) * 2011-01-20 2012-07-26 Sirf Technology Inc. System for location based transaction security
US20120198353A1 (en) * 2011-01-28 2012-08-02 Microsoft Corporation Transferring data using a physical gesture
CN102681958A (en) 2011-01-28 2012-09-19 微软公司 Transferring data using physical gesture
US9451443B1 (en) * 2011-02-04 2016-09-20 CSC Holdings, LLC Providing a service with location-based authorization
US20120331527A1 (en) * 2011-06-22 2012-12-27 TerraWi, Inc. Multi-layer, geolocation-based network resource access and permissions
US8800007B1 (en) * 2011-06-24 2014-08-05 Juniper Networks, Inc. VPN session migration across clients
US20120328101A1 (en) * 2011-06-27 2012-12-27 General Electric Company Method and system of location-aware certificate based authentication
US20140219515A1 (en) * 2011-06-29 2014-08-07 Amazon Technologies, Inc. User identification by gesture recognition
US20130023339A1 (en) * 2011-07-20 2013-01-24 Igt Methods and apparatus for providing secure logon to a gaming machine using a mobile device
US20150112868A1 (en) * 2011-10-03 2015-04-23 Ezetap Mobile Solutions Private Limited Dongle device with communication module for a secure electronic transaction
US20150073987A1 (en) * 2012-04-17 2015-03-12 Zighra Inc. Fraud detection system, method, and device
US20150020185A1 (en) * 2012-05-24 2015-01-15 Fmr Llc Communication Session Transfer Between Devices
CN103457923A (en) 2012-06-05 2013-12-18 阿里巴巴集团控股有限公司 Method, device and system for controlling different-place login
US20130326607A1 (en) * 2012-06-05 2013-12-05 Alibaba Group Holding Limited Method, Apparatus and System of Controlling Remote Login
US8855312B1 (en) * 2012-06-29 2014-10-07 Emc Corporation Mobile trust broker
US9020121B1 (en) * 2012-07-16 2015-04-28 Google Inc. Method and apparatus for sharing data between devices
US9277017B2 (en) * 2012-10-30 2016-03-01 Netiq Corporation Techniques for device independent session migration
US8625796B1 (en) * 2012-11-30 2014-01-07 Mourad Ben Ayed Method for facilitating authentication using proximity
US20140173695A1 (en) * 2012-12-18 2014-06-19 Google Inc. Token based account access
US20140179273A1 (en) * 2012-12-21 2014-06-26 Empire Technology Development Llc Location-based authentication scheme
US20140181911A1 (en) * 2012-12-22 2014-06-26 John Scott Kula Method, system and program product for secure authentication
WO2014104436A1 (en) 2012-12-27 2014-07-03 신한카드 주식회사 Method for mutual authentication for payment device
US20140196142A1 (en) * 2013-01-07 2014-07-10 Apple Inc. Device authentication using list of known good devices
US20140302832A1 (en) * 2013-03-04 2014-10-09 Sony Corporation Phone connection method, electronic terminal and system
US20140273957A1 (en) * 2013-03-15 2014-09-18 Xerox Corporation Method and apparatus for automatically pairing a mobile endpoint device to an output device using a card swipe authentication
US20140351370A1 (en) * 2013-05-24 2014-11-27 International Business Machines Corporation Sharing web application sessions across multiple devices
US20140359735A1 (en) * 2013-05-29 2014-12-04 Sap Portals Israel Ltd Maintaining application session continuity across devices
US20140359709A1 (en) * 2013-06-04 2014-12-04 Google Inc. Maintaining Video Conference Session Continuity During Transfer of Session to Alternative Device
CN104244227A (en) 2013-06-09 2014-12-24 中国移动通信集团公司 Terminal access authentication method and device in internet of things system
US20140379783A1 (en) * 2013-06-20 2014-12-25 Global Golf Tour, LLC Clustered device synchronization
US8646060B1 (en) * 2013-07-30 2014-02-04 Mourad Ben Ayed Method for adaptive authentication using a mobile device
US20150067803A1 (en) * 2013-08-27 2015-03-05 Maan ALDUAIJI Computer device, a method for controlling a login status of a computer device and a server
US20150067181A1 (en) * 2013-08-30 2015-03-05 Egain Communications Corporation Method and system for multi-domain co-browsing in a c2c co-browse architecture through co-browsing functionality provided in a browser extension on a host
US9350717B1 (en) * 2013-09-23 2016-05-24 Amazon Technologies, Inc. Location service for user authentication
US20150121482A1 (en) * 2013-10-31 2015-04-30 Cellco Partnership D/B/A Verizon Wireless Mobile based login via wireless credential transfer
US20160286566A1 (en) * 2013-11-15 2016-09-29 Sony Corporation Information processing device, information processing method and program
WO2015098172A1 (en) 2013-12-26 2015-07-02 株式会社Jvcケンウッド Authentication system, terminal device, authentication server, authentication method, and authentication program
US20150256973A1 (en) * 2014-03-07 2015-09-10 Aol Inc. Systems and methods for location-based authentication
US20150281235A1 (en) * 2014-03-31 2015-10-01 Cellco Partnership D/B/A Verizon Wireless Self-activation of user device
CN104092657A (en) 2014-04-29 2014-10-08 腾讯科技(深圳)有限公司 Information transmission method, device and system
US20150334099A1 (en) * 2014-05-19 2015-11-19 Bank Of America Corporation Service Channel Authentication Token
CN104052751A (en) 2014-06-25 2014-09-17 北京奇艺世纪科技有限公司 Method and device for establishing communication connection
US20150381740A1 (en) * 2014-06-27 2015-12-31 Paul J. Gwin System and method for automatic session data transfer between computing devices based on zone transition detection
WO2016006151A1 (en) 2014-07-11 2016-01-14 オリンパス株式会社 Image display device
US20160056651A1 (en) * 2014-08-20 2016-02-25 Qualcomm Incorporated Fast battery charging through digital feedback

Non-Patent Citations (4)

* Cited by examiner, † Cited by third party
Title
First Chinese Office Action issued in Chinese Application No. CN201410553465.X, dated Feb. 2, 2018 (25 pages).
First Chinese Search Report issued in Chinese Application No. CN201410553465.X, dated Jan. 24, 2018, 1 page.
PCT International Search Report and Written Opinion dated Jan. 12, 2016, issued in corresponding International Application No. PCT/US2015/56028 (9 pages).
Second Chinese Office Action issued in Chinese Application No. CN201410553465.X, dated Aug. 14, 2018 (11 pages).

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